Method, system and non-transitory computer-readable storage medium for dynamically providing a delivery address

The method and system address the inefficiencies of traditional postal addresses by dynamically linking non-standard address information with electronic identifiers, enhancing flexibility and privacy in delivery operations.

WO2026035656A9PCT designated stage Publication Date: 2026-03-12VIRTUPOST INC
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-03-12

AI Technical Summary

Technical Problem

The traditional postal address system, based on physical locations, is cumbersome, error-prone, and inefficient in the digital era, failing to adapt to changing lifestyles and locations, and lacks privacy and control over location data.

Method used

A method and system for dynamically providing a postal address using non-standard address information, associating it with electronic identifiers, and controlling shipping and delivery operations through a processor-based system.

Benefits of technology

Enables flexible, privacy-enhanced, and efficient address management that adapts to changing locations, integrates with digital identifiers, and improves delivery operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

Systems and methods for dynamically providing a postal address. The method includes receiving non-standard postal address information for the user, determining whether the non-standard postal address information corresponds to an electronic identification of the user that is provided as the postal address of parcel or letter to be delivered to the user, in response to a determination that the non-standard postal address information corresponds to the electronic identification of the user, associating the non-standard postal address information with the electronic identification of the user, generating the postal address based on the non-standard postal address information and controlling at least one operation for shipping and delivery, communication and identification of the user based on the postal address.
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Description

Method, system and non-transitory computer-readable storage medium for dynamically providing a delivery address TECHNICAL FIELD

[0001] This applica on relates to dynamically providing a postal address for shipping & delivery,communica on and iden ca on.BACKGROUND

[0002] The current postal address system, which has been in place for nearly 250 years, is fundamentally based on the physical loca on of buildings. While this building-based system hasremained largely unchanged for over two centuries, the emergence of the Internet and advancements in modern transporta on technologies have signi cantly altered lifestyles, leading to increasinglyvirtual, nomadic, and global pa erns of living. Tradi onal mail delivery con nues to rely on sta c,physical building addresses, a model that has become cumbersome, error-prone, and ine cient in thecontext of the digital era. The exponen al growth of digital communica on technologies has createda strong demand for innova ve addressing solu ons that can bridge the gap between conven onalpostal services and the evolving digital environment.

[0003] Conven onal address systems are sta c and do not account for the fact that individualsfrequently change their loca ons. Once a physical address is assigned to an individual, it has o enbeen regarded as permanent. However, this sta c model does not re ect the reali es of the digitalage. The increasing frequency of natural disasters, a ributed in part to climate change, and the rise ofmobile lifestyles have further revealed the limita ons of address systems based solely on physicalbuildings. There is a need for a human-centric address model implemented within a digital framework. Such a model should remain consistent despite changes in physical loca on and should be capable oflinking to both tradi onal postal addresses and modern loca on-iden ca on technologies, includingGPS and various digital iden ers such as social media accounts and virtual iden ty systems.

[0004] In the modern digital landscape, individuals are experiencing a signi cant loss of control overpersonal informa on, especially loca on data. Residen al addresses, which are inherently private, areo en exposed or shared across digital pla orms without the knowledge or consent of the individualsconcerned. There is frequently no clarity regarding who has access to this informa on, the reasons forholding it, or how it is being used. This situa on underscores the necessity of rethinking the tradi onalpostal address system to improve privacy, control, and adaptability in an increasingly digital and interconnected world. Summary

[0005] In various embodiments, a method for dynamically providing a postal address is disclosed. DB1 / 161314422.1As discussed below with respect to FIGs.7C, 7D and 14, the method includes receiving non-standard postal address informa on for a user, determining whether the non-standard postal addressinforma on corresponds to an electronic iden ca on of the user that is provided as the postaladdress of parcel or le er to be delivered to the user, in response to a determina on that the non-standard postal address informa on corresponds to the electronic iden ca on of the user,associa ng the non-standard postal address informa on with the electronic iden ca on of the user,genera ng the postal address based on the non-standard postal address informa on, and controllingat least one opera on for shipping and delivery, communica on and iden ca on of the user basedon the postal address.

[0006] In various embodiments, a system for dynamically providing a postal address is disclosed. The system includes a memory and a processor con gured to: receive non-standard postal addressinforma on for a user, determine whether the non-standard postal address informa on correspondsto an electronic iden ca on of the user that is provided as the postal address of parcel or le er tobe delivered to the user, in response to a determina on that the non-standard postal addressinforma on corresponds to the electronic iden ca on of the user, associate the non-standard postaladdress informa on with the electronic iden ca on of the user, generate the postal address basedon the non-standard postal address informa on and control at least one opera on for shipping anddelivery, communica on and iden ca on of the user based on the postal address.

[0007] In various embodiments, a non-transitory computer readable medium storage is disclosed. The non-transitory computer readable medium storage is con gured to one or more instruc onswhich, when executed by a processor, cause the processor to: receive non-standard postal address informa on for a user, determine whether the non-standard postal address informa on correspondsto an electronic iden ca on of the user that is provided as the postal address of parcel or le er tobe delivered to the user, in response to a determina on that the non-standard postal addressinforma on corresponds to the electronic iden ca on of the user, associate the non-standard postaladdress informa on with the electronic iden ca on of the user, generate the postal address basedon the non-standard postal address informa on and control at least one opera on for shipping anddelivery, communica on and iden ca on of the user based on the postal address.BRIEF DESCRIPTION OF THE DRAWINGS

[0008] The above and other aspects, features, and advantages of certain embodiments of the present disclosure will be more apparent from the following descrip on taken in conjunc on with theaccompanying drawings, in which: DB1 / 161314422.1

[0009] FIG.1 is a schema c view illustra ng a network-based address system including the userapplica on and the server.

[0010] FIG.2 is a schema c view illustra ng one traveling cycle of the package delivery from thesender to the user / receiver controlled by a system by using the non-standard postal address of receiver on the package in the network with generic shipping company and payment en ty.

[0011] FIG.3 is a schema c diagram of a method of genera ng a quality postal address by so wareengine with a sense of me.

[0012] FIG.4 is a owchart illustra ng the decision-making process of the applica on.

[0013] FIG.5 is an example process ow for providing the user’s updated address for the Health Insurance company (the requestor) in conjunc on with the user’s address valida ng process, checkingthe user’s loca on info under me schedule and processing the payment for applica on service.

[0014] FIG.6 is an example process ow snapshot in package delivery scenario from the start to nish where mul ple factors are considered to provide the best address by processing as seen in FIG.5.

[0015] FIG.7A is an example process ow when a person without a system account sends the package to the user in the shipping & delivery network.

[0016] FIG.7B is an example process ow when a person with a system account sends the package to user in the same network as seen in FIG.7A.

[0017] FIG.7C illustrates a set of con nuous ow chart diagram to process a mail or package using anon-standard address (i.e., Virtupost address) as an address on an envelope in a full delivery process cycle.

[0018] FIG.7D illustrates a set of con nuous ow chart diagram to process a mail or package usinga non-standard address (i.e., Virtupost address) as an address on an envelope in a full delivery process cycle.

[0019] FIG.7E is an exemplary embodiment of the contemporary shipping companies’ possible solu on to incorporate and conver ng Non-standard postal address by using their exis ng system atmul ple phases with.

[0020] FIG.8 is a front view of a user device showing how the basic applica on interface is structured.

[0021] FIG.9A is an example illustra on of user interface that is displayed on user’s smartphone witha touch screen demonstra ng how the quality address is generated and saved in user’s database a ervalida ng process where ini al input data goes through mul ple checking database in network.

[0022] FIG.9B is an example illustra on of user interface that is displayed on user’s smartphone witha touch screen to update and accept the default postal address by choosing the format of physical standard postal address within reasonable expected response me frame. DB1 / 161314422.1

[0023] FIG.9C is an example illustra on of user interface that is displayed on user’s smartphone witha touch screen to schedule temporary postal address change, for example: vaca on, by selec ng newaddress stored, and validated as seen in FIG.3 in database and me.

[0024] FIG.9D is an example illustra on of user interface that is displayed on user’s smartphone witha touch screen to send the delivery address by choosing the format of physical address within requested me frame.

[0025] FIG.9E is an example illustra on of a user interface that is displayed on a user’s smartphonewith a touch screen to send the delivery address by choosing the format of GPS coordinates within the requested response me frame.

[0026] FIG.9F is an example illustra on of user interface that is displayed on user’s smartphone witha touch screen to harness Ai technology in urgent medical situa on scenario.

[0027] FIG.10 is an example illustra on of the Administrator’s monitoring of how the deliveryaddress system can contribute to crime preven on by detec ng unusual connec ons between theuser and a building.

[0028] FIG. 11 is an example illustra on of user interface that indicates electronic code to send theelectronic data such as sound, image or movie les.

[0029] FIG. 12 is an example illustra on of user interface that indicates electronic code to sendthe electronic data such as sound, image or movie les.

[0030] FIG.13 is a ow chart for dynamically providing a postal address system by using non- standard postal address informa on.

[0031] FIG.14 illustrates a system address in accordance with some embodiments.

[0032] FIG.15 illustrates exemplary graphical user interfaces in accordance with some embodiments.

[0033] It should be appreciated by those skilled in the art that any block diagrams herein represent conceptual views of illustra ve systems embodying the principles of the present subject ma er.Similarly, it will be appreciated that any ow charts, ow diagrams, state transi on diagrams, pseudocode, and the like represent various processes which may be substan ally represented in computerreadable medium and executed by a computer or processor, whether such computer or processor is explicitly shown. DETAILED DESCRIPTION

[0034] Various embodiments are described in greater detail below with reference to the accompanying drawings.

[0035] In the following descrip on, like drawing reference numerals are used for like elements, evenin di erent drawings. The ma ers de ned in the descrip on, such as detailed construc on andDB1 / 161314422.1elements, are provided to assist in a comprehensive understanding of the example embodiments. However, it is apparent that the embodiments can be prac ced without those speci cally de nedma ers. Also, well-known func ons or construc ons are not described in detail since they wouldobscure the descrip on with unnecessary detail.

[0036] The terms and words used in the following descrip on and claims are not limited to thebibliographical meanings, but are merely used by the inventor to enable a clear and consistent understanding of the disclosure. Accordingly, it should be apparent to those skilled in the art that the following descrip on of various embodiments of the disclosure is provided for illustra on purposeonly and not for the purpose of limi ng the disclosure as de ned by the appended claims and theirequivalents.

[0037] It is to be understood that the singular forms “a,” “an,” and “the” include plural referents unless the context clearly dictates otherwise. Thus, for example, reference to “a component surface” includes reference to one or more of such surfaces.

[0038] As used herein, the terms “1st” or “ rst” and “2nd” or “second” may use correspondingcomponents regardless of importance or order and are used to dis nguish one component fromanother without limi ng the components.

[0039] Expressions such as “at least one of,” when preceding a list of elements, modify the en relist of elements and do not modify the individual elements of the list. For example, the expression, “at least one of a, b, and c,” should be understood as including only a, only b, only c, both a and b, both a and c, both b and c, all of a, b, and c, or any varia ons of the aforemen oned examples.

[0040] Embodiments of the present disclosure will be described below in detail with reference to the accompanying drawings.

[0041] In the following embodiments, standard postal address may refer to the standardized postal address as de ned by USPS opera onal manual, accepted / being used contemporarily and commonlyby most people and its example is 38 Cathedral place st. Augus ne FL 32084, Mar n Smith.

[0042] In the following embodiments, postal address informa on refers to common call-outs suchas “Mar n Smith’ Home Address” and it can be detailed out for delivery or communica on asdescribed above.

[0043] In the following embodiments, electronic iden ca on may mean each individual orbusiness / government en ty’s iden er registered under a user applica on or its businessenvironment.

[0044] In the following embodiments, non-standard postal address informa on may mean that it isnot compliant with the current USPS standardized postal address but can be iden ed uniquely inDB1 / 161314422.1associa on with a system ID (Virtupost ID) so that it can be used in lieu of standard postal address orbe converted into standard postal address to accommodate contemporary shipping and delivery opera ons of government or commercial shipping and logis cs business en es. In someembodiments, the non-standard postal address informa on may be referred to as a non-standardaddress or non-standard address informa on.

[0045] In the following embodiments, standard address format may mean standardized address as per domes cally or interna onally s pulated by its governing organiza ons.

[0046] In the following embodiments, permanent address may mean the default postal address which user uses most frequently in long period of me or it does not require user’s review per each me, or user’s most preferred address in order not to change set by the user.

[0047] In the following embodiments, default address may be used interchangeably with permanent address.

[0048] In the following embodiments, alternate address may mean, the address informa on or itsformat chosen by the user per his / her discre on for op mal result as opposed to default / permanentaddress, the address used in such case like temporary reloca on (vaca on) or when default addressset by the user is not available: because there is no building constructed or because the building is destroyed by natural disasters, or because it is not safe to use (war, crimes or outbreak in pandemic), or simply non-standard postal address physical postal address informa on such as GPS coordinateinforma on which are used in real- me tracking.

[0049] In the following embodiments, the work performed through the applica on included in thepostal (delivery) address system is described as being performed on the user device. In addi on, withrespect to the content of causing the server to output a message or op on on the address applica on,it is abbreviated to describe that the server sends a message to the user device, and the user device displays the received message on the address applica on.

[0050] FIG. 1 is a schema c view illustra ng a system including the user applica on and the server.

[0051] In some embodiments, the system may provide a subscrip on-based online service. Thesubscrip on-based online service may include, but is not limited to, network-based postal / deliveryaddress service. Referring to FIG. 1, the system may include an address applica on 102 and a server100. When the delivery address system receives a request for an address of the user from at least one of address requestors 120, the server 100 may provide a default address of the user stored and selected through communica on with the applica on 102, or may nd an address op mized for a meor format desired by the user through communica on between the user and the applica on 102 orthrough determina on of AI and provide the address to the address requestors 120.DB1 / 161314422.1

[0052] The address requestors 120 may include, but are not limited to, shipping companies 111, commercial companies 112, government agencies 113, nancial / health companies 114, law enforcement 115, social media 116, individual applica on users 117, foreign agencies 118, and spaceagencies 119. The individual applica on users 117 represent users 101 using the address applica on102, and the users using the address applica on 102 may request addresses through the system.

[0053] Each of the address requestors 120 may request address informa on of the users 101through the server 100, and depending on the type, situa on, etc. of the address requestor, the users101 may provide a stored address or provide the requestor with a new postal address op mized forthe me or format desired by the users.

[0054] The address applica on 102 may be installed and executed on an electronic device 103 suchas a desktop computer, a laptop, a tablet, and a smartphone. The user 101 may be assigned an ID through a process of registering with the applica on and may register an address to be used in theapplica on. The ID of the user registered in the address applica on 102 may correspond to anelectronic iden ca on to be used in the applica on and the server 100. The electronic iden ca onmay include le ers and / or numbers. Electronic iden ca on may be provided as the non-standardpostal shipping & delivery address in lieu of standard postal address for an object to be delivered to the user. Also, electronic iden ca on may be associated with physical loca on informa onrepresen ng a physical loca on of the user. In addi on, when registered in the applica on, the user101 may access the applica on use the system regardless of the type of the electronic device 103.

[0055] FIG. 2 is a schema c view illustra ng one traveling cycle of the package delivery from thesender to the user / receiver controlled by a system by using a non-standard postal address of receiver on the package in the network with generic shipping company and payment en ty.

[0056] Speci cally, FIG. 2 shows a communica on between the server 100 in a system (illustrated inFIG. 1) and each en ty (e.g., address requestor, the user applica on 102 and bank / credit network114A, etc.) in real- me during a single traveling cycle of the package delivery. A sender 201 mayperform recep on by visi ng collec on points 111A and 111B to send a target package to be delivered200. In this instance, the sender 201 may perform recep on by wri ng a non-standard postal addressas recipient informa on.

[0057] In some implementa ons, a system (e.g., the system illustrated in FIG. 1 and FIG. 2) may usea system address (e.g., Virtupost address). The system address may include one or more non-standard addresses (non-standard postal addresses). In some implementa ons, the non-standard postaladdress may include alphanumerical informa on, pictorial iden ca on informa on, microprocessor-based iden ers and biometric iden ers uniquely assigned to the user. The alphanumericalDB1 / 161314422.1informa on may include, but is not limited to, digital iden ers (e.g., email address informa on,telephone numbers, social media account informa on, etc.), and geo-coding iden ers (e.g., GPScoordinates, UTM codes, What3Words, or space-based coordinates, etc.) . In some implementa ons,the pictorial iden ca on informa on may include, but is not limited to, QR code, barcode, logos, etc.In some implementa ons, the microprocessor-based iden ers may include, but is not limited to, RFIDtags, SIM cards, integrated circuit chips, etc. The microprocessor-based iden ers may be referred toas non-printed iden ca on including a xable plas c or metal objects. In some implementa ons, thebiometric iden ers may include, but is not limited to, ngerprint, iris scans, voice prints of the user.The system may provide a delivery integra on interface including a secure applica on programminginterface (API) that enables authorized en es, including shipping partners, government agencies, andend users, to query and retrieve a current physical address associated with a user having a system ID (Virtupost ID).

[0058] For example, a target parcel may include a package, a le er, etc. The collec on points 111Aand 111B may include unmanned collec on boxes such as the United States Postal O ce (USPS),United Parcel Service (UPS), Federal Express (FedEX), DHL, Amazon delivery, or local shipping & delivery, or regular stores operated by its employees, or online pickup / shipping services. When the target parcel 200 is received, sor ng, labeling, and distribu on to the nal des na on are performedat nal processing 111C. An address requester may check a non-standard postal address wri en in arecipient eld of the parcel, request a deliverable address of the recipient from the server 100, and receive a standard postal address of the recipient corresponding to the non-standard postal address.

[0059] The server 100 may map the non-standard postal address to an electronic iden ca on in auser pro le in the database, verify whether the address corresponds to a standard postal address, andprompt the user 101 to determine whether physical loca on informa on should be provided to theaddress requester. When the user approves, the server 100 may release the physical loca oninforma on associated with the electronic iden ca on to the address requester.

[0060] In addi on, the address requester may receive physical loca on informa on throughcommunica on with the server 100 and deliver the target parcel to the received address. The en reprocesses related to delivery 111 includes performing recep on at the collec on points 111A and111B, iden fying the address through nal processing 111C, delivering the target parcel to therelevant area through transporta on 111D, re-sor ng the target parcel for delivery in the relevantarea at a distribu on point 111E, and nally arriving at the address of the recipient through naldelivery 111F. In this instance, the nal delivery 111F may be performed through a delivery company, mail person, vehicle, etc., or may be performed through a drone 207A. In addi on, the above-DB1 / 161314422.1described processes related to the delivery 111 are not essen al, and some processes may be omi edor added.

[0061] FIG.3 is a schema c diagram of a method of genera ng a quality address by so ware enginewith a sense of me.

[0062] The delivery address system may include the applica on 102 and the server 100. Theapplica on 102 may have an account created by registra on of the user 101. The users 101 mayinclude both a recipient and a sender. In addi on, the user 101 may include not only individuals butalso companies, government agencies, etc.

[0063] When the user 101 installs the applica on 102 on the device and creates an account, the userinforma on may be registered on the server. The applica on 102 may be used for providing desiredstandard postal address, or non-standard postal address such as GPS for the purpose of Shipping & delivery, Communica on and Iden ca on. For example, the applica on 102 may correspond to auser applica on (e.g., Virtupost applica on).

[0064] User (101) informa on can be stored in a Server 100 upon registra on or a er-registra onas needed and this informa on can include, but not limited to: name, gender, telephone number,biometric informa on. Or, any individual / private ID informa on such as: email address informa on,social media account informa on, messenger app account informa on, commercial / non-commercialinternet service provider’s account informa on, health insurance informa on, pharmacy informa on,history of medical condi ons or allergies, nancial informa on such as bank rou ng number, accountnumber, credit card informa on, government registra on numbers, vehicle informa on, VIN numbers,and geocoding informa on (ex. standard postal address, GPS informa on, or Google Plus Code whichcan be used for shipping and delivery address. The postal address for the user can be default address, which does not require user’s review and selec on each me releasing to the requestors or temporaryaddress, which user choose to use for temporary reloca on.

[0065] The server 100 may include a processor and memory storing instruc ons for execu on by theprocessor. In addi on, the server 100 may include a database 100A, an address quality check engine100B, a coordinate me schedule engine 100C, an AI engine 100D. Although not illustrated in FIG.3, the server 100 may further include a communica on unit for communica on with the outside.

[0066] The database 100A may store user informa on and address informa on registered in theapplica on 102. The address quality check engine 100B may determine whether an address is anactual address and is an address according to a standard postal address format, based on at least one of externally located loca on-based addressing parameters 320. The loca on-based addressingparameters 320 may correspond to major databases used in address systems in each country. For DB1 / 161314422.1example, the loca on-based addressing parameters 320 in the U.S. may include DPV (Delivery PointValida on) 310, LACSLink (Locatable Address Conversion system Link) 311, suiteLINK 312, CASS(Coding Accuracy Support system) 313, NCOALink (Na onal Change of Address Linkage) 314, AEC(Address Element Correc on 315), etc.

[0067] Based on personal informa on and / or a me-related database 340, the coordinate meschedule engine 100C may update address informa on based on a current loca on of the user, ordetermine whether delivery is possible on the corresponding date with the registered address informa on based on the schedule of the user. For example, me-related database 340 may includeweather informa on 321, travel informa on 322, ight informa on 323, hotel informa on 324, localnews 325, crime reports 326, etc. For example, the personal informa on may include schedulerinforma on and calendar informa on related to the user.

[0068] The AI engine 100D may be used by the address quality check engine 100B or the coordinate me schedule engine 100C to determine address informa on and me informa on when the addressrequestor 120 requests address informa on. In addi on, the AI engine 100D may be used to suggestan op mal op on among various address op ons provided to the user. The AI engine 100D may becreated using a model directly created by the user, an AI model provided as open source, or an AI framework. For example, AI models include GPT, BERT, etc., and AI frameworks include, but are not limited to, TensorFlow, PyTorch, scikit-learn, etc. In addi on, in the following embodiments,opera ons performed on the server 100 may be set to always be accompanied by the AI engine.Alterna vely, the opera ons may be accompanied by the AI engine only when the user sets the AIengine to be used only for speci c tasks or there is user input.

[0069] In response to receiving a request from the address requestors 120, the server 100 may determine address informa on of the recipient based on at least one of the address quality checkengine 100B, the coordinate me schedule engine 100C, and the AI engine 100D.

[0070] FIG. 4 is a owchart illustra ng the decision process of the applica on.

[0071] First, the server 100 may receive a request for permanent postal address associated with the electronic iden ca on to deliver the object to the user. The permanent postal address is an addressregistered by the user on the applica on, and may correspond to an address where the user actuallyresides, an address where items may be permanently received even though the user does not actually reside, or an address where items may be periodically received.

[0072] The server 100 may send a permanent postal address request to the user device. In this case, the user device may receive the permanent postal address request, ac vate an applica on, anddisplay a screen of the applica on. At least one so ware bu on capable of responding to theDB1 / 161314422.1permanent postal address request may be displayed on the screen of the applica on, and may includeaccept, reject, re-route, and mute.

[0073] The accept bu on corresponds to consent to providing the permanent postal address of theuser to the requestor. The reject bu on corresponds to refusal to provide the permanent postaladdress of the user to the requestor. The re-route bu on corresponds to providing an op on toprovide an address other than the permanent postal address of the user. The mute bu on sends amessage to the requestor, such as "Undeliverable for no reason," so that neither Accept nor Reject ac ons are reported to the requestor.

[0074] When user input for accept 401 is received, the applica on may send a request op on 402to the server 100. The server 100 may provide an op on based on at least one of the postal addressquality check engine 100B, the coordinate me schedule engine 100C, or the AI engine 100D, and display the op on on the applica on.

[0075] That is, a so ware bu on for the op on may be displayed on the applica on screen. Theop on corresponds to an address op on that may be provided to the requestor by the user, and mayinclude a physical address, GPS coordinates, Google Plus code, and real- me tracking. The physicaladdress may correspond to the default address or the permanent postal address registered by the user as address informa on in the applica on. The GPS coordinates are GPS informa on other thanthe standard postal address format of the address, and may correspond to GPS informa on of thedefault postal address and the permanent postal address, or GPS informa on arbitrarily set by theuser. The Google Plus code is code generated based on la tude and longitude as a loca on encodingsystem issued by Google, and may correspond to GPS informa on of the default postal address andthe permanent postal address, or code at a loca on arbitrarily set by the user. The real- me trackingmay correspond to real- me loca on informa on of a user loca on.

[0076] Next, user input 404 for selec ng one of the displayed op ons may be received. In this case,in response to the user input, server 100 may transmit the address informa on to the requestor. Whenthe address informa on is transmi ed, a process on payment 114A may be performed. For example,the process on the payment 114A may correspond to payment for using the delivery address system through this applica on.

[0077] Meanwhile, when user input for reject 407 is received, the applica on may send a rejectsignal to the server 100 (403), and the server 100 may terminate the request of the requester (406). Op onally, the server 100 may send a message to the requestor indica ng that delivery receipt of theuser has been rejected. DB1 / 161314422.1

[0078] When user input for the re-route 408 is received, the applica on may send a search op on411 to server 100. The re-route 408 may correspond to a case where the user wishes to provide an address to the requestor, but wishes to provide an address where the user does not reside or not owned by the user. For example, the server 100 may search for "op on 1: Recycling Center by Autoselec on or Manual Selec on" or "op on 2: Pre-designated Receiver Address" in response to thesearch op on 411 and display op on 1412 on the applica on.

[0079] When user input for rejec ng op on 1 412 is received, the server 100 may determine to"release pre-designated recipient address" according to op on 2. In this case, the server 100 maysearch the database 100A for informa on about the pre-designated recipient address and display theinforma on on the applica on (414).

[0080] In addi on, user input 404 for selec ng a displayed address may be received. In this case, theserver 100 may transmit address informa on to the requestor in response to the user input. Whenthe address informa on is transmi ed, the payment 114A may be processed.

[0081] Meanwhile, when user input for accep ng op on 1 412 is received, the server 100 maysearch for a recycling center using the AI Engine 100D. For example, the AI-powered Server Engine may perform research on the most e cient nearby recycling center for junk mail. The server 100 maydisplay the best address found based on the AI Engine on the applica on. Furthermore, the user input404 for selec ng the displayed address may be received. In this case, in response to the user input,the server 100 may transmit address informa on for the best address to the requestor. When theaddress informa on is transmi ed, the payment 114A may be processed.

[0082] When user input for rejec ng the re-route 408 is received or user input for the mute 409 isreceived, the server 100 may display a message on the screen of the applica on (410). For example,the message may correspond to "Undeliverable and return for no reason" to the requestor sender. Alterna vely, the message may correspond to a situa onal message indica ng that the user is unableto receive the delivered item.

[0083] In this case, in response to the user input, the server 100 may send a message to the requestor (404A). When the message is sent, the payment 114A may be processed.

[0084] FIG.5 is an example process ow for providing the user’s updated address for the Health Insurance company (the requestor) with steps of valida on process engaging the payment process.

[0085] In one implementa on, organiza ons 120 such as a health insurance company 114B mayrequest user informa on 501 from the user. The health insurance company 114B may request apermanent postal address 502 or desired temporary postal address for sending documents to the user. As described above, the server 100 is connected to the user device 103 via a network, and the user DB1 / 161314422.1device 103 downloads the applica on 102 related to the delivery address system, thereby comple nguser registra on.

[0086] The server 100 may no fy the user of who requests informa on and start a process 503 tothe user device 103 in response to a request for the permanent postal address. In one implementa on,the user device 103 may display on the applica on that the health insurance company has requestedthe permanent postal address and start the process of FIG. 4 described above. In addi on, the userdevice 103 may display a me window on the applica on to inform the user of a response me forthe request.

[0087] In one implementa on, the server 100 may search the database 100A for user informa onand, when a default postal address is found, determine whether to transmit the default postal address in response to a request (504A). For example, the default postal address may correspond to an address set by the user, an address set in a delivery address system, or an address set to be used as a permanent postal address. When transmission to the default postal address is approved, the server 100 may provide the default postal address to the health insurance company.

[0088] When the default postal address is not present, the server 100 may receive user input to select an alterna ve address from among physical postal address informa on, GPS coordinateinforma on, codes for the physical loca on, and real- me tracking informa on represen ng a currentphysical loca on of the user. The server 100 may determine whether the selected alterna ve addressis valid based on the loca on-based addressing parameters described above and personal informa on.When the address is determined to be valid, the server may transmit the address selected by the user as an alternate address.

[0089] When transmission to the default postal address is rejected, the server 100 may determine whether an address is registered in the account of the user (504B). When no address is registered in the account of the user (505A), the server may receive an address from the user, determine whether the wri en address is valid or in a standard postal address format through an address validator 320,and respond (505B). Here, the address validator 320 may correspond to the loca on-based addressingparameters described above. In this instance, the server 100 may determine whether the wri enaddress is valid and, when the address not in the standard postal address format, may provide guidance on the standard postal address format.

[0090] In some embodiments, the server may retrieve rst physical loca on informa onrepresen ng a rst physical loca on associated with the user. For example, the rst physical loca oninforma on means the address registered under User’s account. Also, the server may use, an Ar cialIntelligence (AI) model, determining whether the rst physical loca on informa on associated withDB1 / 161314422.1the electronic iden ca on of the user is valid or not based on at least one of loca on-based postaladdressing parameters and informa on associated with the user.

[0091] In response to a determina on that the rst physical loca on informa on is valid, the servermay associate the electronic iden ca on with the rst physical loca on informa on. Herein, theserver may determine whether the rst physical loca on informa on is represented in a standardpostal address format. In response to a determina on that the rst physical loca on informa on isnot represented in the standard postal address format, the server may provide the user with the rst physical loca on informa on in the standard postal address format. In response to a rst user inputto accepts the rst physical loca on informa on in the standard postal address format, the server mayassociate the electronic iden ca on with the rst physical loca on informa on in the standardpostal address format. The server may enable the electronic iden ca on to be provided as the postaladdress for at least one of shipping and delivery, communica on and iden ca on of the user.

[0092] In response to a determina on that the rst physical loca on informa on is not valid, usingthe AI model, the server may compute a second physical loca on wherein the user is actually locatedbased on the loca on-based postal addressing parameters and the informa on associated with theuser and genera ng second physical loca on informa on represen ng the second physical loca onand providing the user with the second physical loca on informa on. In response to a second userinput that accepts the second physical loca on informa on, the server may associate the electroniciden ca on with the second physical loca on informa on instead of the rst physical loca oninforma on. And then, the sever may enable the electronic iden ca on to be provided as the postaladdress for at least one of shipping and delivery, communica on and iden ca on of the user.

[0093] In addi on, the server 100 may request (506A) me informa on veri ca on for the wri enaddress and respond (506B) based on the database. Here, the me informa on may correspond tothe aforemen oned personal informa on and / or the me-related database 340. In other words, theme coordinate engine 100C of the server 100 may verify whether the wri en address is available fordelivery based on the me informa on extracted from the database. For example, upon checking theme informa on for the address wri en by the user, it may be determined that the user is scheduledto be on an overseas business trip at the me of delivery. In this case, delivery to the address wri enby the user may be inappropriate.

[0094] The address veri ed by the me schedule engine 100C is an alternate postal address, whichmay replace the default postal address. Therefore, the server 100 may provide the alternate postal address to the health insurance company (510). When the me schedule engine 100C determines that DB1 / 161314422.1the address is inappropriate for use as a delivery address, the user may input an addi onal addressand veri ca on thereof may be repeated from step 504B.

[0095] A er the address is provided, a sub-server 100E may perform payment and transac onprocesses. The server may store address informa on related to the transac on in a database.Furthermore, the server may perform a payment process 406 for the transac on via a bank / creditcard payment network. The nancial ins tu on server 114A is connected to the server 100 via anetwork and may be used to pay for the delivery address service used through the applica on.

[0096] FIG. 6 is an example process ow snapshot in package delivery scenario from the start to nish where mul ple factors are considered to provide the best address.

[0097] When a sender submits a package or mail to a shipping company, the shipping company may request shipping informa on and start a shipping process 601. The shipping company may correspondto the postal address requestor 111. Prior to the shipping process, the shipping company may receive a shipping fee from the sender through the bank / credit card payment network, depending on the unique business model of the shipping company.

[0098] The address requestor may request a permanent postal address 602 from the server 100. As described above, the server 100 corresponds to a state in which the user device 103, which has an applica on for the delivery address system installed, is connected to the network.

[0099] The server 100 may no fy the user who requests informa on and package informa on andini ate the process to the user device 103. In one implementa on, the server 100 may perform theprocess described in FIG. 4 in response to a permanent postal address request of the requestor. Addi onally, the user device 103 may output a response me window on the applica on to informthe user of the response me for the permanent postal address request.

[0100] In one implementa on, the server 100 may search the database for user informa on and,when a default postal address is present, determine whether to send the default postal address in response to the request for the permanent postal address (604A). As described above, the default postal address may correspond to an address set by the user, an address set by the delivery address system, etc. When the user consents to sending the default postal address, the server 100 may provide the default postal address to the address requestor, e.g., the shipping company. The address requestor 111 may receive the default postal address and, when con rmed, store the default postaladdress of the recipient in the database.

[0101] When sending to the default postal address is rejected, the server 100 may determine whether another address is registered in the registered user account (604B). When an address is not registered in the user account (605A), addi onal address registra on may be received from the user,DB1 / 161314422.1or an address may be registered based on a current loca on of the user. The server 100 may determinewhether the wri en address is valid or in a standard postal address format using the quality addressvalidator 320 and respond (605B). For example, the quality address validator 320 may respond to the loca on-based addressing parameter described above. In this case, the server 100 may determinewhether the wri en address is valid and, when the address is not in the standard postal addressformat, guide the user to convert the address to the standard postal address format, which is understood with reference to the above-described example of FIG.5.

[0102] In addi on, the server 100 may request veri ca on of me informa on (606A) for the wri enaddress and verify the informa on based on a me-related database or personal informa oncorresponding to the me informa on. That is, the me coordinate engine 100C of the server 100may verify whether a newly added address is eligible for use as a delivery address based on user- related informa on contained in the me informa on.

[0103] An address with both a con rmed loca on and me may be provided to the addressrequestor as an alternate postal address. The address requestor may store the received address in the database as the address of the recipient. Alterna vely, the alternate postal address is an addressprovided once and may be deleted without being stored in the database a er use for delivery.Furthermore, when the newly added address is determined to be unsuitable for use as a delivery address as a result of checking the me informa on, the process may be restarted from step 604Bdescribed above.

[0104] A er the address is provided, the sub-server 100E may perform payment and transac onprocesses. The server may store address informa on related to the transac on in the database. Forexample, when providing the alternate postal address to the requestor, the server 100 may register the alternate postal address as the default postal address in the account of the user. In addi on, forexample, when the providing the alternate postal address to the requestor, the server 100 may register the default postal address as a default postal address only for a speci c requestor.

[0105] Furthermore, the server may have the user perform the payment process 406 for the use of the delivery address service via the bank / credit card payment network. Upon comple on of payment,the address requestor may send a delivery message to the server 100, and the server 100 may display the delivery message on the applica on of the user device 103. For example, the delivery messagemay include informa on about a delivery item, a sender, a recipient, an expected arrival date, etc.Therea er, the address requestor, that is, the shipping company, may complete the delivery usingvarious transporta on methods, such as trucks and drones.DB1 / 161314422.1

[0106] FIG.7A is an example process ow when a person without account sends the package to user in the network.

[0107] For example, as an example of the case where a sender without a system account (Virtupost account) uses the delivery address service to deliver a package or mail 200, an address tag A 700A may be a ached to the package or mail 200. In this implementa on example, the shipping companycorresponds to the requestor. In this case, since the sender does not have an account, a physical address is used. In this example, the tag may be a ached as "From: Mar n Smith, 38 Cathedral PlaceSt. Augus ne FL 32084 To: anna@virtupost.com." When the shipping company accepts the deliveryitem, the sender pays a shipping fee through the bank / credit card payment network.

[0108] Next, the shipping company may perform a scanning process on the delivery item. For example, delivery items may be scanned individually or by a high-speed OCR system in a facility. The shipping company may request a delivery address from the server 100. The shipping company may recognize the electronic iden ca on of the delivery address system described in the recipient andrequest the delivery address from the server that provides the electronic iden ca on. The scanningprocess is described in detail in FIG.7D.

[0109] The server 100 may rst verify whether the electronic iden ca on received from therequestor is to an account registered in an account database. In this implementa on example, "anna"is assumed to be an account registered in the delivery address system. Furthermore, the server 100 may perform the same process described in FIG.4. In other words, as shown in FIG.4, a request for address informa on is sent to the user device 103, and depending on the user input, the process ofthe accept 401, the reject 407, the re-route 408, or the mute 409 may be performed. For the address determined by the user device, the server 100 may authen cate the address. In this instance, theserver 100 may authen cate the address based on an AI engine.

[0110] As an implementa on example, the server 100 may authen cate whether an addressdetermined by the user device is a valid address or conforms to the standard postal address format. Furthermore, when the address is invalid, a no ca on may be provided to the user device again,causing the process of FIG.4 to be repeated. Furthermore, when the address does not conform to the standard postal address format, the server 100 may convert the address format to the standard postal address format using the address validator. This process is understood with reference to the embodiment of FIG. 5 described above. As an implementa on example, the server 100 mayauthen cate whether the address determined by the user device allows delivery based on meinforma on. For example, when the personal informa on of the user indicates a move or businessDB1 / 161314422.1trip scheduled on the delivery date, the address may be determined to be an address not allowing delivery.

[0111] As an implementa on example, when the address is determined to be an address notallowing delivery in a process of authen ca ng whether the address corresponds to the addressdetermined by the user device, the server 100 may provide a no ca on to the user device again,causing the process of FIG. 4 to be repeated. Furthermore, as an implementa on example, when theaddress is determined to be an address not allowing delivery in a process of authen ca ng whetherthe address corresponds to the address determined by the user device, the server 100 may provide an alternate value. For example, the alternate value may include the aforemen oned alternate postaladdress, a deliverable address based on the personal informa on of the user, etc.

[0112] When the delivery address is determined, the server 100 may perform a fee payment process for the delivery address system via the bank / credit card payment network. In this case, the nancial ins tu on server 114A may provide a payment no ca on to the user device 103, allowing the feepayment process to be performed on the user device 103. For example, a fee paid on the user device 103 corresponds to a fee for using a service that allows a user registered in an account to use the delivery address system to complete delivery by simply wri ng an electronic iden ca on withoutwri ng a physical address.

[0113] In addi on, the server 100 may provide a delivery address to the requestor. In this case, therequestor may pay a fee for the delivery address system. For example, the paid fee of the requester may correspond to a fee for a service that provides a delivery address corresponding to the electronic iden ca on recorded on the address tag from the delivery address system.

[0114] When the delivery address is provided, the requestor prints and a aches a shipping label tothe delivery item. The format of the shipping label may vary depending on the shipping company. A detailed descrip on of the shipping label is provided in FIG. 7D. When the shipping label is a achedto the delivery item, the requestor may update the delivery status by transmi ng a no ca on to theuser device that the label has been a ached and delivery is scheduled. The address requestor, that is,the shipping company, may then complete the delivery using various transporta on methods, such astrucks and drones.

[0115] FIG.7B is an example process ow when a person with account sends the package to user in the network.

[0116] This example corresponds to an example where both the sender and the recipient have accounts in the delivery address system. Furthermore, an account in the delivery address system corresponds to an electronic iden ca on. In this example, it is assumed that the sender isDB1 / 161314422.1"mar n@virtupost.com" on an address tag 700B, and the recipient is "anna@virtupost.com," both ofwhich are registered in the delivery address system. Without an address on the package or mail 200, recep on in the shipping company may be performed with an electronic iden ca on.

[0117] In this instance, prior to the recep on in the shipping company, communica on between thesender 104 and the recipient is possible via a chat func on 100F in the applica on providing thedelivery address service. During the chat between the sender 104 and the recipient, informa onindica ng that the sender 104 will deliver an item to the recipient may be registered in the deliveryaddress system. This may be achieved by the sender registering a delivery plan during the chat, or by automa cally extrac ng the informa on by analyzing the chat content using the AI engine of theserver 100.

[0118] A user device of the sender 104 may send a request for a delivery address to the user device of the recipient. In this case, the user device of the recipient may receive the delivery address request via the server 100 and perform the same process as that in FIG.4 described above. In other words, as in FIG. 4 described above, when a delivery address informa on request is sent to the user device ofthe recipient, the process of the accept 401, the reject 407, the re-route 408, or the mute 409 may be performed depending on the user input. The address determined based on the input from the user device described above may be updated on the server 100.

[0119] Meanwhile, the shipping company may collect packages or mail from collec on points111A / B / C and perform a scanning process. The scanning process is described in detail in FIG.7D. Next, the shipping process may be performed by the shipping company. The shipping company may request a delivery address from the server 100 for delivery. In this instance, the shipping company may request adelivery address from the server 100 based on the electronic iden ca on recorded on the addresstag.

[0120] The server 100 may rst verify whether the electronic iden ca on received from theshipping company corresponds to an account registered in the account database. Furthermore, the server 100 may verify whether an address determined through the previously performed process of the accept 401, the reject 407, the re-route 408, or the mute 409 is an address allowing delivery. In an implementa on example, the server 100 may verify whether an address determined by a userdevice is an address allowing delivery based on me informa on. In an implementa on example,when the address determined by the user device is determined to be an address allowing delivery, the server 100 may provide an alternate value.

[0121] When the delivery address is determined, the server 100 may perform a fee payment process within the delivery address system via the bank / credit card payment network. In this case, the sender DB1 / 161314422.1and recipient may pay a fee for using the delivery address service. For example, although not shown, the sender may pay a fee for using electronic iden ca on instead of the delivery address. In addi on,the recipient may pay a fee for using electronic iden ca on instead of the delivery address.

[0122] When the delivery address is provided by the server 100, the shipping company may print and a ach a shipping label to the delivery item. The format of the shipping label may vary for eachshipping company. A detailed descrip on of the shipping label is provided in FIG. 7D. When theshipping label is a ached to the delivery item, the requestor may update the delivery status by sendinga no ca on to the user device that the label has been a ached and delivery is scheduled. Next, theaddress requestor, that is, the shipping company, may complete the delivery using various transporta on methods, such as trucks and drones.

[0123] FIG.FIG. 7C illustrates a set of con nuous ow chart diagram to process a mail or packageusing a non-standard address (i.e., Virtupost address) as an address on an envelope in a full delivery process cycle.

[0124] The ow chart diagram of FIG.7C describes that delivery is possible through this delivery address system when a sender writes a non-standard address in a situa on of sending a target package.

[0125] In some embodiments, the non-standard address may be referred to as non-standard postal address informa on. The non-standard address refers to address informa on included in an addresstag on a package or mail, and corresponds to an address that does not conform to a standard address format. Furthermore, non-standard postal addresses may include the electronic iden ca on, thetemporary iden ca on, the alpha-numeric iden ca on informa on, and the pictorial iden ca oninforma on described above. Speci cally, a non-standard address box 230 in FIG. 7C includes a list ofexamples of the non-standard address (included in the system address (e.g., Virtupost address)) in accordance with some embodiments. In some implementa ons, the examples may include a pluralityof categories which includes, but is not limited to, alphanumerical informa on (e.g., alphanumericalinforma on 231), pictorial iden ca on informa on (e.g., pictorial informa on 232), microprocessors233 (or non-printed iden ca on), and biometric iden ers 234) uniquely assigned to the user asdiscussed above.

[0126] In some implementa ons, the alphanumerical informa on 231, may include, but is notlimited to digital iden ers 231A (e.g., email address informa on, social media account informa on,telephone number, messenger account informa on, tech company account informa on, onlineservice account informa on, etc.) and geo-coding iden ers 231B (e.g., GPS coordinate informa on,UTM codes, What3Words, space-based coordinates, etc.). Here, the temporary iden ca on may notbe an account o cially registered in the delivery address system, but rather a one- me or temporaryDB1 / 161314422.1account. Also, the pictorial iden ca on informa on 232 may include image informa on andbiometric informa on.

[0127] As shown in FIG. 7C, the alphanumerical informa on 231 may include “facebook ID”,“Instagram ID”, “twi er ID” as social media account informa on, “telegram ID”, “whatsapp ID”,“kakaotalk ID” as messenger account informa on, “micfoso ID”, “google ID”, “apple ID” as techcompany account informa on, “amazon ID”, “Airbnb ID”, “booking ID” as online service accountinforma on, “2RGH+42 OJJATO”, “40.785696,-73.986521” as GPS informa on. Also, as shown in FIG.7C, the pictorial informa on 232 may include, but is not limited to, QR code, barcode, signature. Insome implementa ons, the microprocessor-Based Iden ers 233 may include, but is not limited to,RFID tags, SIM cards, integrated circuit chips. In some implementa ons, the biometric informa on 234may include, but is not limited to, ngerprint, iris scans, and voice prints of the user.

[0128] In addi on, although not illustrated, the non-standard postal address informa on mayinclude non-printed iden ca on such as an electronic chip, an electronic paper circuit, an RFID tag,or a micro-chip. For example, since the package or mail does not have le ers or images, and non-printed iden ca on, such as a microchip, is included on an envelope of the package or mail, thedelivery address may be set through a user applica on.

[0129] The shipping company may perform task 710 of sor ng received packages or mail on aconveyor belt or a table. Address iden ca on is further described in FIG. 7D.

[0130] FIG. 7D illustrates a set of con nuous ow chart diagram to process a mail or package usinga non-standard address (i.e., Virtupost address) as an address on an envelope in a full delivery process cycle. FIG. The set of con nuous ow chart of FIG. 7D shows an example of the process of how non-standard addressed packages (mail or package) are scanned and labeled while delivery company’s server communicates with Server. The set of con nuous ow chart illustrated in FIG.7D incorporatesexis ng contemporary mailing and shipping methods and processes, including but not limited toopera ons 710, 711, 717, 717A / B, etc. In some implementa ons, during the courses of exis ngcontemporary mailing and shipping methods and processes, the non-standard address (e.g., virtupost address) is converted into a standard postal address. The standard postal address is then printed on a new paper label, which is a xed on top of the original non-standard address. By doing so, a proposedsystem can preserve the exis ng terminal delivery work ow with minimal modi ca ons, therebyfacilita ng the integra on of non-standard addressing while enabling mul ple new func ons and newbene ts not achievable with the tradi onal postal addressing systems.

[0131] This implementa on example, as shown in FIG. 7C, describes a process of reques ng adelivery address from the shipping company requestor and performing a matching process when a DB1 / 161314422.1package or mail received by the sender includes non-standard postal address informa on rather thanan actual address.

[0132] The sorted package or mail may be scanned using a scanning device, such as an OCR scanning machine or a handheld scanner (711). In this instance, scanned data, including the non-standard postal address informa on, may be transmi ed to a sever of the address requestor. The server may receivenon-standard postal address informa on for the user.

[0133] The address requestor may request that the server 100 match the non-standard postal address informa on with account informa on registered in the delivery address system. The servermay determine whether the non-standard postal address informa on corresponds to the electroniciden ca on of the user. The server 100 may detect whether the received non-standard postaladdress informa on matches account informa on registered in the database (714). That is, the server100 may detect whether the non-standard postal address informa on registered in the databaseincludes non-standard postal address informa on requested to be matched (230). As described abovein FIG. 7C, the non-standard postal address informa on may include the alpha-numeric iden ca oninforma on, the pictorial iden ca on informa on, microprocessor-based iden ers, and biometriciden ers uniquely assigned to the user. For example, when the informa on scanned and transmi edfrom the shipping company is an Instagram ID, it is possible to verify which user database contains the Instagram ID as non-standard postal address informa on.

[0134] When the requested non-standard postal address informa on is informa on stored in thedatabase, the requested non-standard postal address informa on may be matched with the electroniciden ca on stored in the database. In response to a determina on that the non-standard postaladdress informa on corresponds to the electronic iden ca on of the user, the server may associatethe non-standard postal address informa on with the electronic iden ca on of the user. Forexample, when an Instagram ID is registered as non-standard postal address informa on, theInstagram ID may be matched with the electronic iden ca on registered in the delivery addresssystem. However, when the requested non-standard postal address informa on is not stored in thedatabase, an address search process for the requested non-standard postal address informa on maybe terminated.

[0135] The server may enable the non-standard postal address informa on to be provide as thepostal address for at least one of shipping and delivery, communica on and iden ca on of the user.Also, the server may release the physical loca on informa on associated with the electroniciden ca on of the user to a shipping company.DB1 / 161314422.1

[0136] The server 100 may retrieve the address registered in the registered electronic iden ca onaccount and transmit the address to the address requestor in the standard postal address format. The standard postal address format may correspond to a standardized address format for each country. For example, a U.S. address may correspond to a format including a street number, a street name, a secondary unit, a city, a state, and a zip code.

[0137] In addi on, the server 100 may u lize the received standard postal address format as adelivery address. For example, the server 100 transmits the received standard postal address format to a labeling machine or printer (716), and the labeling machine or printer prints the received standard postal address format, which may be a ached to a package or mail.

[0138] Various formats and designs may be set to use the address wri en in the standard postaladdress format as the shipping label. Next, the address requestor, that is, the shipping company, may complete the delivery to the recipient using various transporta on methods, such as trucks anddrones.

[0139] FIG. 7E is an exemplary embodiment of the contemporary shipping companies’ possible solu on to incorporate Non-standard postal address by using their exis ng system at mul ple phases.

[0140] A descrip on will be given of a delivery method when an address tag on which a non-standardpostal address is wri en as a recipient address is a ached to the target package or mail. For example,a case where a non-standard postal address 230 is wri en as the recipient includes a case where astandard format postal address is wri en as a sender (700A), or a case where an electroniciden ca on is wri en as a sender (700B).

[0141] As described in FIG. 7D, when non-standard postal address informa on is converted into astandard format postal address of the user registered in the account as a delivery address, a shipping label 717A may be a ached as an overlay on an address tag of the package. Similarly, a shipping label717B may be a ached as an overlay on an address tag of the mail. The package may then be deliveredto the recipient via various transporta on methods with the standard format postal address a ached.

[0142] FIG.8 is a front view of a user device showing how the basic applica on interface is structured.

[0143] As an implementa on example, an applica on interface of the user device providing thedelivery address service may include an informa on area represen ng informa on and an input arearepresen ng a por on to be a target of user input. The informa on area may include accountinforma on 801, a mode selector 802, an informa on display area 803, and a me response meter850, and the input area may include account informa on 801, a mode selector 802, an informa ondisplay area 803, sub-selectors 804, a send bu on 805, a main jog divider 870, a main jog dial selector810, a sub-jog dial selector 831, an AI bu on 840, sub-informa on displays 880 and 881, and the meDB1 / 161314422.1response meter 850. The applica on interface illustrated in FIG.8 may correspond to a basic structureof a delivery address service applica on. The bu ons illustrated in the interface correspond to sobu ons, and posi ons of the bu ons and the respec ve areas are an example, and the bu ons andthe respec ve areas may be arranged in di erent posi ons.

[0144] The account informa on 801 represents informa on indica ng an account of the usedservice, and may be displayed when the user logs into the applica on. The mode selector 802represents a usage mode of the applica on and may include, for example, delivery, valida on, update,and emergency. The informa on display area 803 represents an area that displays the status andcurrent informa on 860 of the service provided by the applica on, using images or text. Theinforma on provided in the informa on display area 803 may appear di erently depending on theusage mode. The sub-selector 804 may be provided as an input bu on when addi onal selec on isrequired depending on the usage mode and may appear di erently depending on the usage mode.While FIG. 8 illustrates three sub-selectors as an example, this is not a limita on and may variousnumbers of sub-selectors maybe provided.

[0145] The send bu on 805 represents a bu on ul mately selected in the usage mode. For example,in delivery mode, the send bu on may correspond to a bu on used when the user nally sends thedelivery address. The main jog dial selector 810 may represent an input bu on for an importantfunc on in each usage mode, appears di erently in each usage mode, and may be displayed bydividing a remaining por on excluding a center por on of a circle into n areas. For example, in FIG. 8,the main jog dial selector 810 may be divided into three areas to display three input bu ons. The mainjog divider 870 corresponds to an area that divides the main jog dial selector.

[0146] The sub-jog dial selector 831 displays sub-selec on op ons of the main jog dial selector 831,may be located outside the main jog dial selector 831, and may appear di erently in each usage mode.The sub-informa on displays 880 and 881 correspond to areas that display addi onal informa on,and ac va on status thereof may vary depending on each usage mode. The AI bu on 840 maycorrespond to an input por on for selec ng whether to ac vate the AI engine included in the server100. The me response meter 850 may represent informa on such as the progress of a process andan available input me for an input bu on in each usage mode, and may appear di erently dependingon the usage mode.

[0147] The user interface of this implementa on example is an example, and other implementa onsare en rely possible. FIGs. 9A to 9F below illustrate examples of the applica on interface displayed ineach usage mode. DB1 / 161314422.1

[0148] FIG. 9A is an example illustra on of user interface that is displayed on user’s smartphonewith a touch screen demonstra ng how to register the quality address in user’s database a ervalida ng process where ini al input data goes through mul ple checking database in network.

[0149] Address quality is very important for delivery or mailing communica ons. Currently, thereare so many 3rd party service providers and a user does not know which one to choose. The user has to visit them one by one. A system (e.g., the system illustrated in FIG.1, FIG.2 and FIG.3) integrates all these processes into one single AI bu on 940A. The user can choose the target to validate by 3op ons as shown at 961, 962, or 963. OCR technology can help the system to digi ze the wri enaddress on paper or other media by using the smartphone’s camera to scan. Address 964 is where user inputs and this address is usually problema c - di erent organiza ons had di erent rule. Forexample, Austrian airline does not take New York as a city name, it takes only NYC. If they do not take the address, the system stops - delivery does not happen or the package gets delivered to the wrong address. Address 968 is the standardized address which are accepted by all organiza on or servers. Asalready represented at FIG. 3, bu ons from 931 thru 935 ashes when the system contac ng theirserver and checking for visualiza on for the User.

[0150] A valida on mode 902A may correspond to a mode for checking whether an addressconforms to a standard postal address format, is an actually exis ng address, or is an address allowingdelivery on an expected delivery date, and searching or changing an appropriate address. In this embodiment, an example of changing to a standard address format is shown in the informa on displayarea, and an address registered in the account of the user or an address entered by the user may be displayed in the area of address 964. The address standardized 968 corresponds to an example in which an address conforming to the standard address format of the address wri en in the address964 is displayed. The address standardized 968 is a standardized address which is accepted by all organiza ons or servers.

[0151] The sub-selector located at the bo om of the informa on display area may include single961, address book 962, and scan 963. The main jog dial selector includes register 911, temporary 912, and valida on address 913, and as already represented in FIG. 03, bu ons 931 to 935 ash when thesystem contacts their server and for visualiza on checking for the user. The sub-jog dial selector ofthe valida on address 913 may include DPV check 935, LACSLink check 934, suiteLINK check 933, TotalZIP+4 check 933, NCOALink check 932, and AEC check 931, which represent the respec ve databasescorresponding to the loca on-based addressing parameters described above in FIG. 3. In addi on, asend bu on may be displayed at a center of the main jog dial selector, and a me progress barDB1 / 161314422.1indica ng AI bu on 940A and valida on progress 950A may be displayed at the bo om of the mainjog dial selector.

[0152] For example, in valida on mode, when the register 911 is selected, a standardized addressmay be registered to the account. When the temporary 912 is selected, the standardized address may be registered as a temporary address. When the valida on address 913 and a submenu are selected,the address 964 may be converted into a standard format based on the respec ve database.

[0153] Meanwhile, among the bu ons displayed on the applica on interface, a graphical e ect maybe provided to indicate that a bu on has been selected for which user input has been received.

[0154] FIG. 9B is an example illustra on of user interface that is displayed on user’s smartphonewith a touch screen to update and accept the default address by choosing the format of physical address within reasonable expected me frame.

[0155] Americans change their health insurance companies frequently per their reloca on or changeof jobs and they are notorious of using the old address to mail their thick envelope of medical bills even years and months a er seeing the doctors. Default postal address 903B is the one commonlycalled “permanent postal address” where an individual receive mail at most occasions. The compu ngprocess of this ac on is delineated at FIG.5. Main jog dial 914 can simultaneously accept the outcomeof address valida on process and accept as seen 404.

[0156] An UPDATE mode 902B may correspond to a mode for upda ng an address registered in anaccount. In this embodiment, requestor informa on 971, old address 973, and new address selected975 may be displayed in the informa on display area.

[0157] The main jog dial selector is displayed at the bo om of the informa on display area, andbased on the update mode, accept update 914, re-route 917, 915 and 914, and mute 916 bu ons maybe displayed. In addi on, the sub-jog dial selector, which is a physical address 936, GPS coordinators937, Google plus code 938, and real- me tracking 939, may be included outside the accept update914 bu on. As described above in FIG. 4, the physical address may correspond to the default postaladdress or permanent postal address registered by the user as address informa on in the applica on.The GPS coordinates are GPS informa on not in the standard postal address format of the address,and may correspond to the GPS informa on of the default postal address and the permanent postaladdress, or the GPS informa on arbitrarily set by the user. A Google Plus code is code generated basedon la tude and longitude as a loca on encoding system issued by Google, and may correspond to GPSinforma on for the default postal address and the permanent postal address, or loca on codearbitrarily set by the user. Real- me tracking may correspond to real- me loca on informa on of theuser. DB1 / 161314422.1

[0158] The outer side of the re-route 917 bu on may include sub-jog dial selectors, RECYCLINGcenter 940 and FAUX address 941. As described in FIG.4, the RECYCLING center 940 may correspond to a loca on for processing a spam mail rather than an actual address of the user, and the FAUXaddress 941 may correspond to a fake address provided for privacy protec on.

[0159] Below the main jog dial selector, indicators indica ng AI bu on 940B and Time le 950B maybe displayed. In this embodiment, the indicators may indicate that there are three days le for aresponse to a delivery address request from the requestor.

[0160] In this embodiment, when user input for accept 914 is received, a delivery address may be determined to be provided to the requestor. In addi on, for example, when user input for the physicaladdress 936 is received, current address informa on may be output, and when addi onal user inputfor the accept 914 is received, the new address selected 975 may be updated with the default postal address 903B.

[0161] With regard to a real me tracking 938 bu on of this gure, the server (or the user device)may detect a change in user’s physical loca on in real me. Then, the server may compute a newphysical loca on based on the loca on-based addressing parameters and the personal informa onand genera ng new physical informa on. In some embodiments, the server may determine a meperiod for associa ng the electronic iden ca on with the new physical loca on informa on. And,the server may receive a user input to determine a me period for associa ng the electroniciden ca on with the third physical loca on informa on. Then the server may provide the newphysical loca on informa on to the user as a temporary postal address (one- me-use address). Whenthe server cannot receive user input for associa ng the third physical loca on informa on within theme period, the server may associate the electronic iden ca on with the rst physical loca oninforma on or the second physical loca on informa on which has been previously found. In someimplementa ons, a system (system illustrated in FIG.1, FIG.2 and FIG.3) or a server in the system mayinclude a digital addressing engine con gured to generate the temporary postal address. As discussedabove, the temporary postal address may support a one- me-use address to facilitate anonymity,enhanced security, or accommodate speci c situa onal requirements. The one- me-us address isassigned for a temporary use in connec on with a delivery or communica on transac ons, and maybe associated with a de ned delivery window. Addi onally, a corresponding disposal rule may beapplied to specify expira on, redirec on, or anonymiza on of the address upon comple on of its use.

[0162] In some implementa ons, the system or the server is con gured to provide a user-con gurable privacy se ng that controls the visibility and accessibility of the system address (e.g.,Virtupost address). The user-con gurable privacy se ng allows for the de ni on of access levels,DB1 / 161314422.1which may include, but is not limited to, a public, private, or emergency-only visibility. These access levels can be applied to di erent categories of recipients or delivery scenarios, thereby enablinggranular control over address exposure based on context or user preference. In some implementa ons, the system address (Virtupost address) may include an emergency-access protocolcon gured to temporarily disclose cri cal loca on or contact informa on in response to healthemergencies, natural disasters, or urgent safety events. This protocol enables authorized emergency responders to access and u lize the user's ac ve system address along with any associated deliveryinstruc ons, thereby facilita ng mely and accurate response ac ons. In some implementa ons, thesystem address (e.g., Virtupost address) may be con gured to integrate with internet-connecteddevices, including but not limited to autonomous delivery drones, smart lockers, and robo c couriers.Such integra on enables precise delivery or pickup opera ons based on dynamic or GPS-based systemaddress resolu on.

[0163] Also, in response to a user input to accepts the new physical loca on informa on as thetemporary postal address, the server may update the electronic iden ca on by associa ng theelectronic iden ca on with the new physical loca on informa on instead of the rst physicalloca on informa on or the second physical loca on informa on.

[0164] In some implementa ons, the system or the server may include a cross-pla orm addressresolu on engine that translates one or more iden ers into a current deliverable physical address.The transla on may be performed through secure server communica on or blockchain-basedveri ca on mechanisms. The one or more iden ers may include, but are not limited to, to emailaddresses, usernames, GPS coordinates, QR codes.

[0165] FIG.9C is an example illustra on of user interface that is displayed on user’s smartphone witha touch screen to schedule temporary postal address change by selec ng new address stored indatabase and me.

[0166] For example, a user (e.g., Anna) will have a vaca on in Florida with an accompanyingindividual (e.g., Mar n) who is training in Florida’s space center. Time coordinator displays 979 on thecalendar and receives the vaca on schedule from the user’s Outlook. Server may also obtain therelevant data such as weather report, current crime sta s cs, or airplane informa on available at thetouch on 904C bu on. This address of 981 has already checked for valida on. 943 bu on representsthis will be a temporary postal address, which does not override the default se ng.918 jog dial showsthe user’s frequent use of address as an op ons. The user chose Address 2. The 919 jog dial shows theuser’s moving schedule per her calendar and gives the op ons and the user chooses Time3.DB1 / 161314422.1

[0167] As a di erent example from FIG. 9B described above, UPDATE mode 902C may correspondto a mode for upda ng an address based on a me schedule of the user. In this embodiment, displayme selected 977, calendar 978, and address selected 980 may be displayed in the informa on displayarea. In addi on, vaca on schedule 979 may be addi onally displayed in calendar 978 based onanalysis by a me coordinator engine of the server 100. Address 981 wri en in address selectedcorresponds to an address veri ed by the server 100 as available for delivery during the vaca onschedule 979.

[0168] At the bo om of the informa on display area, sub-selectors such as weather, crime report,and airplane may be displayed, which correspond to bu ons that may provide news related to thearea corresponding to the address listed in address selected.

[0169] In addi on, loca on and me bu ons, which are main jog dial selectors, may be displayed atthe bo om of the informa on display area. The loca on bu on may be subdivided into bu onslabeled address 1 to address 3, and the me bu on may be subdivided into bu ons labeled me 1 tome 3. The loca on and me bu ons may include sub-jog dial selectors, temporary 943, default 942,update 944 bu ons, located outside of the loca on and me bu ons. The address 1 to address 3bu ons in the loca on bu on may include an address frequently used by the user as a delivery address,in addi on to an address suggested for vaca ons. Furthermore, the me 1 to me 3 bu ons in theme bu on may include various me op ons considering vaca on travel schedules.

[0170] In this embodiment, when user input for the temporary 943 is received, an address wri enin address selected 980 may be set to correspond to a temporary address. Furthermore, when user input for me 3 944 is received, the address selected as the temporary address or the vaca onschedule may be updated on the server 100.

[0171] In some implementa ons, as shown in FIG. 9B and FIG. 9C, the user interface provides aselectable interface con gured to enable switching between mul ple address types (e.g., 936, 937,938, 939, 943). The mul ple address types may include, for example, permanent address, temporaryaddress, GPS-based address, or emergency-use address. The interface allows real- me addressselec on or switching through a user applica on (e.g., a Virtupost applica on) or a web-basedpla orm.

[0172] FIG. 9D is an example illustra on of user interface that is displayed on user’s smartphonewith a touch screen to send the delivery address by choosing the format of physical address within requested me frame. DB1 / 161314422.1

[0173] For example, a user (or a primary user) (e.g.,Anna) moves from NYC to the West coast. A sender (or a secondary user) (e.g., Mar n) is having spaceship training in Florida, and he sends a gito the user’s new address. 986 represents a conven onal physical building address. 950D responseme indicates how much me the user needs to tell the shipping company’s nal delivery address. This “delay” is eliminated by pre-mailing communica on between the user and the sender as seen inFIG 07A, 100F, delivery address applica on. Delivery address Chat App 100F can be chat so ware likeTelegram or Whatsapp.

[0174] Delivery mode 902D corresponds to a mode in which actual delivery occurs a er a responseto the address request. In this embodiment, sender and package informa on 200, requestorinforma on 971D, and address selec on 980 may be displayed in the informa on display area. Here,the sender corresponds to a person sending a package, and the requestor corresponds to the shipping company that receives the package from the sender and carries out the delivery.

[0175] The main jog dial selector is displayed at the bo om of the informa on display area. Eventhough the mode is di erent from FIG. 9B described above, the input area is structured in the sameway, and thus descrip on will be omi ed. FIG. 9B corresponds to a delivery address applica oninterface where address informa on is updated when a health insurance company requests addressinforma on in FIG.5. FIG.9D corresponds to a delivery address applica on interface where a deliverystatus is reported a er approving a request for address informa on from the sender sending an ar clethrough the shipping company in response to the request in FIG.6. Unlike FIG.9B, FIG.9D may display adelivery period 903D in an informa on area in which an applica on interface indicates informa onto report an es mated delivery me for the package to the applica on user.

[0176] In this embodiment, when user input for physical address 945 is received, current address informa on may be output. According to the me le 950D indicator, when user input for "send" isreceived within 10 hours, the address wri en in the address selected 980 may be transmi ed to theshipping company.

[0177] FIG. 9E is an example illustra on of a user interface that is displayed on a user’s smartphonewith a touch screen to send the delivery address by choosing the format of GPS coordinates within the requested me frame.

[0178] A user (or a primary user) (e.g., Tom) plans to propose an individual (e.g.,Helen) at the top of the cli in somewhere in Utah but the user forgets to pack the ring box. The user messages a sender(or a secondary user) (e.g., Ryan) to deliver it by drone as quickly as possible. GPS coordinates may be recommended as a delivery address because there is no building address it can nd.903 indicates how DB1 / 161314422.1much me is le ll the drone arrives and it can ash and give vibra on (by the smartphone) to theuser as it nears him.972D is just an example of a delivery company.

[0179] As described above in FIG. 9D, delivery mode 902E corresponds to a mode in which a response to an address request is made and actual delivery is performed. Since the informa on areaand the input area are con gured iden cally to those in FIG. 9D, a detailed descrip on thereof will beomi ed.

[0180] In this embodiment, when user input for GPS coordinates 946 is received, GPS coordinate informa on may be output to the address requested 980. When user input for send is received withina remaining me according to a me le 950E indicator, the GPS coordinate informa on wri en inthe address selected 980 may be transmi ed to a drone delivery company.

[0181] FIG.9F is an example illustra on of user interface that is displayed on user’s smartphone witha touch screen to harness Ai technology in urgent, for example medical situa on, scenario.

[0182] When a user (e.g., Anna) and an accompanying individual (e.g., Tom) are planning to have a vaca on by the lake away from the city. While they are driving, the accompanying individual falls intoa medical emergency all of sudden and the user needs medicine (drone delivery) or medical support (by 911 helicopter). Unfortunately, there are no buildings around. They need to drive through the meandering local roads surrounded by two adjacent mountains to reach the cabin by the lake.

[0183] AI Engine in the server may turn on 948 real- me tracking func on which sends the GPScoordinates by every 10 seconds. 1004 represents the original des na on for their vaca on by thelake. It will take 1 hour and 14 minutes for them to reach at their current speed of driving a er passingthrough bumpy and curvy local roads. Even without AI engine, any contemporary GPS in the car can calculate this and give that data to the server.1001 shows the drone or helicopter’s possible y route but it is very far for them to get there 1004.

[0184] 1005 represents the current loca on where the user and the accompanying individual aredriving. 1002 represents the poten al drone (or helicopter) y route. It cannot y high over themountain top due to its mechanical limit such as ba ery or cloud / high-wind condi ons. It will take 2hours 37 minutes if the user and the accompanying individual stop and wait for the medicine or rescue. This is data fetched by the server in networking with the drone company or 911 server.1003 is the op mized y pass for both par es recommended by AI engine a er quick analysis of all the op onslisted above. The server may send the user a message that they need to keep driving to the 1007 loca on because it will take only 11 minutes for them to rendezvous with the drone (or helicopter).

[0185] Emergency mode 902F corresponds to a mode in which a registered user requests delivery of goods in an emergency situa on. This example illustrates the case of the drone 207A. When thisDB1 / 161314422.1emergency mode is used by an emergency medical helicopter, displayed informa on or acon gura on thereof may vary. Unlike the other drawings described above, the informa on area inthis example may display a map. The map area may display a current loca on 1006 of the user. Theuser is in an emergency situa on and needs to select a loca on to meet and receive the goods viadrone delivery.

[0186] The main jog dial selector is displayed at the bo om of the informa on area, and each bu onmay display a delivery me based on the emergency mode. In addi on, the outer area of the bu onsincluded in the main jog dial selector may display a basis for deriving the delivery me. For example, the C120 selec on bu on 924 located at the top displays "2 hr 37 min", indica ng a me it takes forthe package to arrive at the current loca on of the user. In addi on, a selec on bu on 926 on the ledisplays "1 hr 14 min", indica ng a me it takes for the package to reach a des na on of the user. Theselec on bu on 925 on the right displays "0 hr 11 min", indica ng a me it takes to search for an AI-op mized rendezvous point 1007, where the package may be safely and quickly received, through theAI engine of the server and reach the corresponding loca on.

[0187] In this embodiment, the user needs emergency medicine to arrive quickly. Therefore, when user input for "0 hr 11 min" derived through the AI engine is received, the drone delivery dispatched by a 911 doctor is set to quickly y to the AI-derived loca on 1007, and the user is advised to con nuedriving and drive to the AI-recommended loca on.

[0188] FIG. 10 is an example illustra on of the Administrator’s monitoring of how the deliveryaddress system can contribute to crime preven on by detec ng unusual connec ons between theuser and a building.

[0189] When an unusual connec on is detected between delivery addresses due to an addi onallyprovided service in the delivery address system, the server may no fy individuals, organiza ons, andbusinesses. When a plurality of account users shares the same delivery address, it is possible to detect any unusual rela onship that may lead to criminal ac vity among people using the delivery addressbased on rela onships among the account users.

[0190] Circular indicators 1013 shown on the le and right of FIG. 10 may represent account usersin this system. House 1012, shown on the le and right, was set to a typical suburban home designedfor a family of four or ve. A primary connec on line 1010 visualized by analy cal tool to show howmany people are using this building 1012 for their default postal address for receiving packages on a daily basis.

[0191] A secondary connec on line 1011 visualized by analy cal tool to show the rela onshipbetween the account holders who are ed to the building. On the right-hand side, the ght-knit DB1 / 161314422.1connec ons between the family members are shown because they send and receive gi s, le ers onholidays, or daily family communica ons. However, assumed criminals on the le -hand side, are withless knit connec ons with each other because they are not acquainted with each other. These peopleare using the building for their intended plot only - like smuggling, bomb manufacturing, or other criminal inten ons. This represents one example of the poten al bene ts provided by a deliveryaddress system that integrates postal addresses into a digital pla orm. With access to a user addressdatabase, it becomes possible to analyze migra on pa erns for iden fying real estate trends or todetect abrupt changes in default address informa on, which may indicate the occurrence of naturaldisasters. Such changes can be agged and communicated to relevant agencies, such as the Federal Emergency Management Agency (FEMA) or law enforcement organiza ons. The poten al applica onsof this system are numerous and diverse.

[0192] FIG.11 and FIG.12 are an example illustra on of user interface that indicates electronic code.

[0193] Another user interface of the proposed system may provide an electronic code that can recall memories or the moment of future when receiver ac vates it. The electronic code may be composedof a unique alphanumeric string generated by a user applica on (e.g., Virtupost applica on) and beprovided to the user who intends to send electronic data to other user. Various les such as the user's electronic images, videos, and sound may be stored in the system in conjunc on with the electroniccode. In addi on, when the electronic code is recognized through a camera in the user device or theelectronic code is input through the user interface, the server may display various les related to the user on the user interface. For example, when an input for an electronic code is received on the user's birthday, the system may automa cally play and provide messages, photos, and videos related to theuser's birthday.

[0194] FIG.13 is a ow chart for dynamically providing a postal address in accordance with some embodiments.

[0195] More speci cally, when non-standard postal address informa on for shipping and delivery isreceived, the proposed inven on relates to a method of providing a standard postal address by linkingnon-standard postal address informa on with an account registered in a system (e.g., systemillustrated in FIGs.1-3).

[0196] The system or a server in the system (e.g., server 100) may receive non-standard postal address informa on for a user (S110). As described above, the non-standard postal addressinforma on may include alpha-numeric iden ca on informa on, pictorial iden ca on informa on,microprocessor-based iden ers, and biometric iden ers uniquely assigned to the user.DB1 / 161314422.1

[0197] Next, the server may determine whether the non-standard postal address informa oncorresponds to an electronic iden ca on of the user that is provided as the postal address of parcelor le er to be delivered to the user (S120). As described above, the electronic iden ca on associatedwith physical loca on informa on represen ng a physical loca on of the user.

[0198] In response to a determina on that the non-standard postal address informa oncorresponds to the electronic iden ca on of the user, the server may associate the non-standardpostal address informa on with the electronic iden ca on of the user (S130).In some implementa ons, the system or the server may generate a postal address (e.g., systemaddress, Virtupost address) based on the non-standard postal address informa on (S140). Asdescribed above with respect to FIG. 1, the postal address may include one or more non-standard addresses (non-standard postal addresses). In some implementa ons, the system or the server maycon gure a graphical user interface to provide a no ca on to a suer regarding an incoming requestfor at least one of user’s standard postal address and other private informa on (e.g., exis ng emailaddress, mailing address, phone number, etc.). In some implementa ons, the graphical user interfacemay be con gured to receive a user input authorizing the system to release, display or include the atleast one of user’s standard postal address and other private informa on with the postal address.Based on a receipt of the authoriza on, the system is con gured to: associate the electroniciden ca on of the user with a standard postal address of the user stored on a user’s electronic device(e.g., smartphone, laptop, etc.), validate the standard postal address of the user to ensure deliverability within exis ng mailing and shipping systems, control at least one opera on for shipping,delivery, communica on, or iden ca on based on the validated standard postal address of the user.For examples, the system may release, display, transmit, distribute the standard postal address along with the postal address to at least one reques ng en ty (e.g., shipping company) for execu ng at leastone opera on related to shipping, delivery, communica on, and iden ca on of the user.

[0199] Then, the system or the server may control at least one opera on for shipping and delivery,communica on and iden ca on of the user based on the postal address (S150). As discussed abovewith respect to FIG. 2, FIG. 10, the system or the server may be con gured to control at least oneopera on associated with shipping and delivery, communica on and iden ca on of the user bycommunica ng with each en ty involved in the delivery process using the postal address during adelivery cycle (traveling cycle) of the package delivery from a sender to a user. Addi onally, the systemor the server may monitor the delivery process to ensure proper execu on and coordina on of theinvolved opera ons.DB1 / 161314422.1

[0200] In some implementa ons, a system (system illustrated in FIGs.1-3) or the server is con guredto digitally cer fy or mestamp delivery events or message exchanges. This func onality providesveri able proof-of-delivery or intent which may be suitable for use in legal, regulatory, or compliancerelated correspondence.

[0201] FIG.14 illustrates a system address in accordance with some embodiments.

[0202] As explained above, the system address (Virtupost address) may include one or more non- standard addresses (non-standard postal addresses). The le side of FIG. 14 represents categories ofnon-standard address informa on and the right side of FIG. 14 shows real-world examples. Asexplained above with respect to FIG.7C and shown in FIG.14, the one or more non-standard address may include a plurality of categories which includes, but is not limited to, alphanumerical informa on(e.g., alphanumerical informa on 231), pictorial iden ca on informa on (e.g., pictorial informa on232), microprocessors 233 (or non-printed iden ca on), and biometric iden ers 234) uniquelyassigned to the user. In some implementa ons, the alphanumerical informa on includes digitaliden ers and geo-coding iden ers. The digital iden ers may include, but is not limited to, systemIDs (Virtupost IDs), personal or business emails, ins tu onal or government emails, websites, socialmedia handles, online messaging IDs, phone numbers, vehicle license numbers, VINs, or temporary addresses (“one- me” Virtupost). The geo-coding iden ers (or geoloca on iden ers) may include,but is not limited to, GPS coordinates, Earth Centered, Earth Fixed (ECEF) or Universal Transverse Mercator (UTM) coordinates, Google Plus Codes, What3Words addresses, RoboCodes, or heliocentric coordinates for space-based applica ons. The pictorial iden ers may include, but is not limited to,QR codes, barcodes, logos, digital signatures, stylized scripts, or drawings and sketches. The micro- processor may include, but is not limited to, chip-based iden ers such as SIM cards, EMV cards, RFIDtags, NFC chips, IC cards, or hybrid smart cards. The biometric iden ers may include, but is not limitedto, ngerprints, iris or re na scans, palm vein pa erns, voiceprints, or handwri ng recogni on pro les.

[0203] As explained above, the one or more non-standard addresses may be linked to a user’s tradi onal standard address (e.g., actual standard street or mailing address). In someimplementa ons, a system automa cally associates the one or more non-standard addresses with thestandard address to generate a system address (e.g., Virtupost address). In some implementa ons,the system may determine whether to include the standard address in the system address based on a user’s input to grant or deny release of the standard address. Based on the user’s input, the system may control at least one opera on for standard shipping, communica ons, and user iden ca onprocesses by providing the system address and providing the system address is provided as a primary contact point. Under the system framework (Virtupost framework), the non-standard iden ers areDB1 / 161314422.1used as postal addresses, allowing messages, packages, or digital communica ons to be delivered toa recipient without requiring disclosure of the tradi onal standard address. This enables secure,mobile, and loca on-independent delivery while maintaining op onal linkage to a tradi onal postaladdress for rou ng or veri ca on purposes.

[0204] FIG.15 illustrates exemplary graphical user interfaces in accordance with some embodiments.

[0205] FIG. 15 shows exemplary graphical user interfaces provided by a user applica on (Virtupostapplica on) for execu ng an ini al sign-up process and a linking process for associa ng a system ID(Virtupost ID) with a standard address and a non-standard address. In some implementa ons, asystem (the system illustrated in FIGs.1-3) and / or a server (server 100) may con gure and display thegraphical user interfaces on a user electronic device (e.g., smart phone, tablet, laptop, etc.) for the ini al sign-up process and the linking process. A rst user interface 1510 is con gured to receive arst user input for the sing-up process. In response to the rst user input, a second user interface 1520 to receive basic informa on (e.g., name, email address) to generate a system ID (Virtupost ID).In response to the second user input, a third user interface 1530 is con gured to receive a third userinput represen ng user’s standard postal address informa on and automa cally link or associate astandard postal address informa on with the system ID. In response the third user input, a fourthuser interface 1540 is con gured to receive a fourth user input represen ng one or more non-standardpostal addresses and automa cally associate or link the one or more non-standard addresses with thesystem ID and the standard postal address. The system is con gured to store all informa on receivedfrom the user in associa on with the system ID.

[0206] In some embodiments, the server (e.g., server 100) performs a method for dynamically providing a postal address for foreign shipping. For example, when someone wants to send mail or package to a foreign country, the server can provide the best transla on with English equivalent orfetch the data from the foreign postal service provider’s English equivalent for the postal address wri en in foreign language. The Server will save and recommend this for the repeated ac on.

[0207] In some embodiments, the server performs a method for providing privacy and protec onagainst phishing, doxing, internet trolling or iden ty the . For example, the Standard postal addressis required by law to be wri en by combining name line, street address line, zip code line & countrycode line. And if a user is U.S. ci zen, the user is required to share much informa on publicly by lawswhile such informa on openly reveals name, physical loca on, telephone number. And suchinforma on can be both publicly and privately interconnected by unexpected events.

[0208] For example, a person’s private informa on such as name, address and telephone numberbecome public record uninten onally when his / her company goes bankruptcy so that that company’sDB1 / 161314422.1business records becomes the court’s documents. While Such U.S. laws do not cover such excep onsin all cases, such informa on is accessible via internet search both domes cally and interna onally.And such informa on provides links to person or en es’ addi onal informa on sources such as socialmedia such as Facebook, LinkedIn, or Instagram. Such informa on once publicly shared, it is copiable,capturable by so ware and propagated without hindrance. Such contact informa on is searchableand downloadable by foreign na onals who have internet access. The user (e.g., U.S. ci zen) mustabide by U.S. laws, but U.S. laws are not forceable to foreign na onals. Non-standard postal addressby using a system ID (Virtupost ID) enables a person to share its contact informa on more freely andopenly while protec ng one’s personal informa on. Using only email address format in the system IDwhich does not contain so much informa on as standard postal address. Hence, fundamentallyremoving personal informa on from the internet or any 3rd party’s data server or documenta onbeyond User’s control. Because the user can accept or refuse the release of contact informa on tothe requestor. Hence, the user can control his / her / its exposure of contact informa on. And the usercan be protected safely against Internet, global terrorists domes cally and interna onally.

[0209] In some embodiments, the server performs a method for providing control of one’s personal informa on against phishing, doxing, internet trolling or iden ty the . For example, in conven onaladdressing systems, it is o en unclear who possesses a given individual's standard postal addressinforma on, and there is typically no mechanism for tracking its distribu on or access. Addi onally,recipients generally cannot refuse unsolicited packages or mail delivered to their address, and changing a postal address usually requires physically reloca ng. Unlike telephone numbers or personalnames, which can be updated rela vely easily, modifying a physical address is substan ally moredi cult and constrained by loca on-dependent factors. The user applica on may provide a User aninforma on who requests address informa on. The user applica on may provide a user an op on toaccept to release postal informa on where one lives or Works. In some implementa ons, the userapplica on may provide a user an op on to refuse to such informa on to the requestor.

[0210] In some embodiments, the server performs a method for providing anonymity and protec onagainst phishing, doxing, internet trolling or iden ty the . Because the Standard postal addressreveals name, where a person lives or works. Also, Non-standard postal address by using a system ID (Virtupost ID) enables a person to communicate or exchange a package or mail without revealing personal informa on such as name, where a person lives. Non-standard postal address by using thesystem ID enables a person to share its contact informa on more freely and openly while protec ngone’s personal informa on.DB1 / 161314422.1

[0211] In some embodiments, the server performs a method for providing less erroneous postal address. Such the Standard postal address is required by law to be wri en by combining name line,street address line, zip code line & country code line. Using only email address format which does not contain so much informa on as standard postal address. Also, Postal service and shipping companiescan reduce the undeliverable mail problems. By reducing the undeliverable problems, less waste or less incinera on to destroy undelivered mail or packages. Domes cally and globally, less carbonfootprints are produced. Domes cally and globally, less trees are cut down to produce paper.

[0212] In some embodiments, the server performs a method for providing live connec on (or be erconnec vity) for the package or le er parcel. Such the Standard postal address is dead informa ononce it is wri en or printed on the parcel. Also, Non-standard postal address by using a system ID(Virtupost ID) can provide alive connec on for all three par es sender, receiver and shipper in case ofloss of parcel. Non-standard postal address by using the system ID can provide alive connec on andpar es related to shipping and delivery process can be contacted without special equipment orbarcode. And, Non-standard postal address by using the system ID can provide alive connec on andpar es related to shipping and delivery process can be contacted in case of loss or parcel or naturaldisaster, i.e. act of god.

[0213] In some embodiments, referring to FIG.9B, the server performs a method for providing real- me updatability for postal address. Such standard postal address requires constant update when the User moves. While User has to visit one by one in order to report and update the change of address to all the en es such as, but not limited to: governmental, nancial ins tu on, health organiza on,commercial service providers, local agencies. Non-standard postal address by using a system ID (Virtupost ID) can provide live and real- me change of address to all these en es.

[0214] In some embodiments, the server performs a method for securely providing non-postal address informa on by using a system ID (Virtupost ID). Major func on of the system ID is to providepostal address in standard postal address format or non-standard postal address format. For example, non-postal address informa on refers to such as, but not limited to alpha-numerical forms. Such non-postal address is regarded as private and sensi ve informa on. For example, such informa on isvarious ID card numbers, Passwords, account numbers or codes: Health insurance informa on,pharmacy informa on, history of medical condi ons or allergies, Financial informa on such as bankrou ng number, account number, credit card informa on, Government registra on numbers, Driver’slicense informa on, VIN Number (Vehicle Iden ca on number) Also, the system ID can expand itsdata set from postal address to such above. The system ID can release such informa on securely withthe User’s full control. DB1 / 161314422.1

[0215] In some embodiments, the server performs a method for providing an electronic link to any digital informa on by using a system ID (Virtupost ID). Such digital informa on can be any computerreadable, playable informa on such as, but not limited to Texts, images, photos, movies, and anydigital data set for speci c so ware. Also, the system ID can receive and send such above informa onelectronically among its Users.

[0216] In some embodiments, the server performs a method for providing an electronic communica on by using a system ID (Virtupost ID). The system ID enable users to send and receivedigital data. The system knows its user - his / her / its digitally reachable address informa on. Also, thesystem ID is operated by the installed APP on smartphone or computer. The server can provide such services like email, tex ng or cha ng app func ons.

[0217] In some embodiments, the server performs a method for providing an electronic currency by using a system ID (Virtupost ID). For example, the system ID enables users to payment informa onsuch as bank credit card. Also, the system users have secured process to accept or refuse. The system ID can be used as an electronic currency.

[0218] In some embodiments, the server performs a method for providing an electronic key or ID card by using a system ID (Virtupost ID). For example, the system ID enables users to manage user’s informa on digitally, securely. While smartphone has a capability to send and receive con den alinforma on such as credit card informa on for payment by tapping. Virtupost app installedsmartphone can be used as an electronic key to house, o ce or a safe.

[0219] In some embodiments, the server performs a method for providing an address in non- habitable space by using a system ID (Virtupost ID). The Standard postal address relies on building constructed on land in Earth. System ID address is not based on the building address. Such non- habitable space refers to, but not limited to: Microenvironment where humans cannot see in normal condi ons, Human mind, Underwater marine environment in Earth, Space or other planets in theuniverse. While non-conven onal parcel can refer to, but not limited to digital data informa on,electric waves, radio-ac ve waves, chemical substances in microworld. Also, the system ID can enablesend or receive non-conven onal parcels such as above to the designated environment within theEarth or beyond the Earth or within the visible world or beyond the visible world.

[0220] Although the present disclosure has been illustrated and described with reference to speci c

[0221] Speci c embodiments:DB1 / 161314422.1Embodiment 1. A method for dynamically providing a postal address, comprising: receiving non-standard postal address informa on for a user;determining whether the non-standard postal address informa on corresponds to anelectronic iden ca on of the user that is provided as the postal address of parcel or le er to bedelivered to the user; and in response to a determina on that the non-standard postal address informa on correspondsto the electronic iden ca on of the user, associa ng the non-standard postal address informa onwith the electronic iden ca on of the user;genera ng the postal address based on the non-standard postal address informa on; andcontrolling at least one opera on for at least one of shipping and delivery, communica on andiden ca on of the user based on the postal address.Embodiment 2. The method according to embodiment 1, wherein the non-standard postal address informa on includes alpha-numeric iden ca on informa on, pictorial iden ca oninforma on, , microprocessor-based iden ers, and biometric iden ers uniquely assigned to theuser. Embodiment 3. The method according to embodiment 2, wherein the alphanumerical informa on includes at least one of email address informa on, social media account informa on,messenger app account informa on, commercial / non-commercial internet service provider’saccount informa on, Geocoding informa on.Embodiment 4. The method according to embodiment 2, wherein the pictorial iden ca on informa on includes at least one of QR code, barcode, imagery, and gura vebiometric informa on.Embodiment 5. The method according to embodiment 4 wherein the gura ve biometricinforma on includes ngerprint of the user.Embodiment 6. The method according to embodiment 1, wherein the electronic iden ca on of the user is associated with physical loca on informa on represen ng a physicalloca on of the user.Embodiment 7. The method according to embodiment 6, comprising: releasing the physical loca on informa on associated with the electronic iden ca on of theuser to a shipping company. Embodiment 8. The method according to embodiment 1, comprising: retrieving rst physical loca on informa on represen ng a rst physical loca on associatedwith the user; DB1 / 161314422.1using, an Ar cial Intelligence (AI) model, determining whether the rst physical loca oninforma on associated with the electronic iden ca on of the user is valid or not based on at leastone of loca on-based postal addressing parameters and informa on associated with the user;in response to a determina on that the rst physical loca on informa on is valid, associa ngthe electronic iden ca on with the rst physical loca on informa on; andenable the electronic iden ca on to be provided as the postal address for at least one ofshipping and delivery, communica on and iden ca on of the user.Embodiment 9. The method according to embodiment 8, wherein in response to a determina on that the rst physical loca on informa on is valid, associa ng the electroniciden ca on with the rst physical loca on informa on such that the electronic iden ca on isprovided as the postal address for at least one of shipping and delivery, communica on andiden ca on of the user comprises:determining whether the rst physical loca on informa on is represented in a standard postaladdress format; in response to a determina on that the rst physical loca on informa on is not representedin the standard postal address format, providing the user with the rst physical loca on informa onin the standard postal address format; and in response to a rst user input to accepts the rst physical loca on informa on in thestandard postal address format, associa ng the electronic iden ca on with the rst physical loca oninforma on in the standard postal address format.Embodiment 10. The method according to embodiment 9, comprising: in response to a determina on that the rst physical loca on informa on is not valid, usingthe AI model, compu ng a second physical loca on wherein the user is actually located based on theloca on-based postal addressing parameters and the informa on associated with the user andgenera ng second physical loca on informa on represen ng the second physical loca on andproviding the user with the second physical loca on informa on;in response to a second user input that accepts the second physical loca on informa on,associa ng the electronic iden ca on with the second physical loca on informa on instead of therst physical loca on informa on; andenabling the electronic iden ca on to be provided as the postal address for at least one ofshipping and delivery, communica on and iden ca on of the user.Embodiment 11. The method according to embodiment 10, wherein the second physical loca on informa on is represented in the standard postal address format.DB1 / 161314422.1Embodiment 12. The method according to any of embodiments 9 and 10, comprising: receiving a third user input to update the rst physical loca on informa on or the secondphysical loca on informa on with at least one of GPS coordinate informa on for the rst physicalloca on informa on or the second physical loca on informa on, codes for the rst physical loca oninforma on or the second physical loca on informa on, and real- me tracking informa onrepresen ng a current physical loca on; andupda ng the rst physical loca on informa on or the second physical loca on informa onbased on the third user input. Embodiment 13. The method according to any of embodiments 9-12, comprising: detec ng a change in user’s physical loca on in real me;in response to a detec on, using the AI model, compu ng a new physical loca on based onthe loca on based postal addressing parameters and the personal informa on associated with theuser and genera ng third physical loca on informa on represen ng the new physical loca on;providing the third physical loca on informa on to the user as a temporary postal address;and in response to a fourth user input to accepts the third physical loca on informa on as thetemporary postal address, upda ng the electronic iden ca on by associa ng the electroniciden ca on with the third physical loca on informa on instead of the rst physical loca oninforma on or the second physical loca on informa on.Embodiment 14. The method according to embodiment 13, comprising: using the AI model, determining a me period for associa ng the electronic iden ca on withthe third physical loca on informa on.Embodiment 15. The method according to embodiment 13, comprising: receiving a h user input to determine a me period for associa ng the electroniciden ca on with the third physical loca on informa on.Embodiment 16. The method according to any of embodiments 14 and 15, comprising: aer the me period, associa ng the electronic iden ca on with the rst physical loca oninforma on or the second physical loca on informa on.Embodiment 17. The method according to embodiment 5, comprising: receiving a request for permanent postal address associated with the electronic iden ca onto deliver the object to the user from a requester; in response to the request, providing a no ca on regarding the request to the user;determining whether a default postal address is set based on user informa on associated withDB1 / 161314422.1the electronic iden ca on; andin response to a determina on that the default postal address is set, providing the defaultpostal address to the requester. Embodiment 18. The method according to embodiment 17, wherein the default postal address is set by the user. Embodiment 19. The method according to embodiment 18, comprising: in response to a determina on that the default postal address is not set, receiving a h userinput to select an alternate postal address from among physical postal address informa on, GPScoordinate informa on, codes for the physical loca on, and real- me tracking informa onrepresen ng a current physical loca on of the user;using, an Ar cial Intelligence (AI) model, determining whether the selected alternate postaladdress is valid or not based on at least one of loca on-based postal addressing parameters andpersonal informa on associated with the user; andin response to a determina on that the selected alternate postal address is valid, providingthe selected alternate postal address to the requester. Embodiment 20. A system for dynamically providing a postal address, comprising: a memory; aprocessor con gured to:receive non-standard postal address informa on for a user;determine whether the non-standard postal address informa on corresponds to an electroniciden ca on of the user that is provided as the postal address of parcel or le er to be delivered tothe user; in response to a determina on that the non-standard postal address informa on correspondsto the electronic iden ca on of the user, associate the non-standard postal address informa on withthe electronic iden ca on of the user;generate the postal address based on the non-standard postal address informa on; andcontrol at least one opera on for shipping and delivery, communica on and iden ca on ofthe user based on the postal address. Embodiment 21. The system according to embodiment 20, wherein the non-standard postal address informa on includes alpha-numeric iden ca on informa on, pictorial iden ca oninforma on, microprocessor-based iden ers, and biometric iden ers uniquely assigned to theuser. DB1 / 161314422.1Embodiment 22. The system according to embodiment 21, wherein the alphanumerical informa on includes at least one of email address informa on, social media account informa on,messenger app account informa on, commercial / non-commercial internet service provider’saccount informa on, Geocoding informa on.Embodiment 23. The system according to embodiment 21, wherein the pictorial iden ca on informa on includes QR code, barcode, signature, and ngerprint of the user.Embodiment 24. The system according to embodiment 23, wherein gura ve biometricinforma on includes ngerprint of the user.Embodiment 25. The system according to embodiment 20, wherein the electronic iden ca on of the user is associated with physical loca on informa on represen ng a physicalloca on of the user.Embodiment 26. The system according to embodiment 20, wherein the processor is further con gured to release the physical loca on informa on associated with the electronic iden ca onof the user to a shipping company. Embodiment 27. The system according to embodiment 20, wherein the processor is con gured to:retrieve rst physical loca on informa on represen ng a rst physical loca on associated withthe user; using, an Ar cial Intelligence (AI) model, determine whether the rst physical loca oninforma on associated with the electronic iden ca on of the user is valid or not based on at leastone of loca on-based postal addressing parameters and informa on associated with the user; andin response to a determina on that the rst physical loca on informa on is valid, associatethe electronic iden ca on with the rst physical loca on informa on;enabling the electronic iden ca on to be provided as the postal address for at least one ofshipping and delivery, communica on and iden ca on of the user.Embodiment 28. The system according to embodiment 27, wherein the processor is con gured to:determine whether the rst physical loca on informa on is represented in a standard postaladdress format, in response to a determina on that the rst physical loca on informa on is notrepresented in the standard postal address format; provide the user with the rst physical loca on informa on in the standard postal addressformat; in response to a rst user input to accepts the rst physical loca on informa on in theDB1 / 161314422.1standard postal address format, associate the electronic iden ca on with the rst physical loca oninforma on in the standard postal address format.Embodiment 29. The system according to embodiment 27, wherein in response to a determina on that the rst physical loca on informa on is not valid, using the AI model, theprocessor is con gured to:compute a second physical loca on wherein the user is actually located based on the loca on-based postal addressing parameters and the informa on associated with the user,generate second physical loca on informa on represen ng the second physical loca on andprovide the user with the second physical loca on informa on;in response to a second user input that accepts the second physical loca on informa on,associate the electronic iden ca on with the second physical loca on informa on instead of the rstphysical loca on informa on; andenable the electronic iden ca on to be provided as the postal address for at least one ofshipping and delivery, communica on and iden ca on of the user.Embodiment 30. The system according to embodiment 29, wherein the second physical loca on informa on is represented in the standard postal address format.Embodiment 31. The system according to any of embodiments 28 and 29, wherein the processor is con gured to:receive a third user input to update the rst physical loca on informa on or the secondphysical loca on informa on with at least one of GPS coordinate informa on for the rst physicalloca on informa on or the second physical loca on informa on, codes for the rst physical loca oninforma on or the second physical loca on informa on, and real- me tracking informa onrepresen ng a current physical loca on andupdate the rst physical loca on informa on or the second physical loca on informa onbased on the third user input. Embodiment 32. The system according to any of embodiments 27-29, wherein the processor is con gured to:detect a change in user’s physical loca on in real me;in response to a detec on, using the AI model, compute a new physical loca on based on theloca on based postal addressing parameters and the personal informa on associated with the user;generate third physical loca on informa on represen ng the new physical loca on;provide the third physical loca on informa on to the user as a temporary postal address;in response to a fourth user input to accepts the third physical loca on informa on as theDB1 / 161314422.1temporary postal address, update the electronic iden ca on by associa ng the electroniciden ca on with the third physical loca on informa on instead of the rst physical loca oninforma on or the second physical loca on informa on.Embodiment 33. The system according to embodiment 31, wherein using the AI model, the processor is con gured to determine a me period for associa ng the electronic iden ca on withthe third physical loca on informa on.Embodiment 34. The system according to embodiment 31, wherein the processor is con gured to receive a h user input to determine a me period for associa ng the electroniciden ca on with the third physical loca on informa on.Embodiment 35. The system according to any of embodiments 32 and 33, wherein a erthe me period, the processor is con gured to associate the electronic iden ca on with the rstphysical loca on informa on or the second physical loca on informa on.Embodiment 36. The system according to embodiment 25, wherein the processor is con gured to:receive a request for permanent postal address associated with the electronic iden ca onto deliver the object to the user from a requester; in response to the request, provide a no ca on regarding the request to the user;determine whether a default postal address is set based on user informa on associated withthe electronic iden ca on; andin response to a determina on that the default postal address is set, provide the default postaladdress to the requester. Embodiment 37. The system according to embodiment 36, wherein the default postal address is set by the user. Embodiment 38. The system according to embodiment 37, wherein the processor is con gured to:in response to a determina on that the default postal address is not set, receive a h userinput to select an alternate postal address from among physical address informa on, GPS coordinateinforma on, codes for the physical loca on, and real- me tracking informa on represen ng a currentphysical loca on of the user;using, an Ar cial Intelligence (AI) model, determine whether the selected alternate postaladdress is valid or not based on at least one of loca on-based postal addressing parameters andpersonal informa on associated with the user; andin response to a determina on that the selected alternate postal address is valid, provide theDB1 / 161314422.1selected alternate postal address to the requester. Embodiment 39. A non-transitory computer readable medium storage con gured to one ormore instruc ons which, when executed by a processor, cause the processor to:receive non-standard postal address informa on for a user;determine whether the non-standard postal address informa on corresponds to an electroniciden ca on of the user that is provided as a postal address of parcel or le er to be delivered to theuser; in response to a determina on that the non-standard postal address informa on correspondsto the electronic iden ca on of the user, associate the non-standard postal address informa on withthe electronic iden ca on of the user;generate a postal address based on the non-standard postal address informa on; andcontrol at least one opera on for shipping and delivery, communica on and iden ca on ofthe user based on the postal address. Embodiment 40. The non-transitory computer readable medium storage according to embodiment 39, wherein the non-standard postal address informa on includes alpha-numericiden ca on informa on, pictorial iden ca on informa on, microprocessor-based iden ers andbiometric iden ers uniquely assigned to the user.Embodiment 41. The non-transitory computer readable medium storage according to embodiment 40, wherein the alphanumerical informa on includes at least one of email addressinforma on, social media account informa on, messenger app account informa on,commercial / non-commercial internet service provider’s account informa on, Geocodinginforma on.Embodiment 42. The non-transitory computer readable medium storage according to embodiment 40, wherein the pictorial iden ca on informa on includes at least one of QR code,barcode, imagery, and gura ve biometric informa on.Embodiment 43. non-transitory computer readable medium storage according to embodiment 42, wherein the gura ve biometric informa on includes ngerprint of the user.Embodiment 44. The non-transitory computer readable medium storage according to embodiment 43, wherein the electronic iden ca on of the user is associated with physical loca oninforma on represen ng a physical loca on of the user.Embodiment 45. The non-transitory computer readable medium storage according to embodiment 44, wherein the one or more instruc ons which, when executed by a processor, causeDB1 / 161314422.1the processor to: release instruc ons release the physical loca on informa on associated with theelectronic iden ca on of the user to a shipping company.Embodiment 46. The non-transitory computer readable medium storage according to embodiment 39, wherein the one or more instruc ons which, when executed by a processor, causethe processor to perform: retrieve rst physical loca on informa on represen ng a rst physical loca on associated withthe user; using, an Ar cial Intelligence (AI) model, determine whether the rst physical loca oninforma on associated with the electronic iden ca on of the user is valid or not based on at leastone of loca on-based postal addressing parameters and informa on associated with the user;in response to a determina on that the rst physical loca on informa on is valid, associatethe electronic iden ca on with the rst physical loca on informa on; andenable the electronic iden ca on to be provided as the postal address for at least one ofshipping and delivery, communica on and iden ca on of the user.Embodiment 47. The non-transitory computer readable medium storage according to embodiment 46, wherein the one or more instruc ons which, when executed by a processor, causethe processor to: determine whether the rst physical loca on informa on is represented in a standard postaladdress format; in response to a determina on that the rst physical loca on informa on is not representedin the standard postal address format, provide the user with the rst physical loca on informa on inthe standard postal address format, and in response to a rst user input to accepts the rst physical loca on informa on in thestandard postal address format, associate the electronic iden ca on with the rst physical loca oninforma on in the standard postal address format.Embodiment 48. The non-transitory computer readable medium storage according to embodiment 47, wherein the one or more instruc ons which, when executed by a processor, causethe processor to: in response to a determina on that the rst physical loca on informa on is not valid, usingthe AI model, compute a second physical loca on wherein the user is actually located based on theloca on-based postal addressing parameters and the informa on associated with the user andgenerate second physical loca on informa on represen ng the second physical loca on and providethe user with the second physical loca on informa on;DB1 / 161314422.1in response to a second user input that accepts the second physical loca on informa on,associate the electronic iden ca on with the second physical loca on informa on instead of the rstphysical loca on informa on; andenable the electronic iden ca on to be provided as the postal address for at least one ofshipping and delivery, communica on and iden ca on of the user.Embodiment 49. The non-transitory computer readable medium storage according to embodiment 48, wherein the second physical loca on informa on is represented in a standardpostal address format. Embodiment 50. The non-transitory computer readable medium storage according to any of embodiments 47 and 48, wherein the one or more instruc ons which, when executed by aprocessor, cause the processor to: receive a third user input to update the rst physical loca on informa on or the secondphysical loca on informa on with at least one of GPS coordinate informa on for the rst physicalloca on informa on or the second physical loca on informa on, codes for the rst physical loca oninforma on or the second physical loca on informa on, and real- me tracking informa onrepresen ng a current physical loca on; andupdate the rst physical loca on informa on or the second physical loca on informa onbased on the third user input. Embodiment 51. The non-transitory computer readable medium storage according to any of embodiments 47-50, wherein the one or more instruc ons which, when executed by a processor,cause the processor to: detect a change in user’s physical loca on in real me;in response to a detec on, using the AI model, compute a new physical loca on based on theloca on based postal addressing parameters and the personal informa on associated with the user;generate third physical loca on informa on represen ng the new physical loca on;provide the third physical loca on informa on to the user as a temporary postal address; andin response to a fourth user input to accepts the third physical loca on informa on as thetemporary postal address, update the electronic iden ca on by associa ng the electroniciden ca on with the third physical loca on informa on instead of the rst physical loca oninforma on or the second physical loca on informa on.Embodiment 52. The non-transitory computer readable medium storage according to embodiment 51, wherein the one or more instruc ons which, when executed by a processor, causeDB1 / 161314422.1the processor to: using the AI model, determine a me period for associa ng the electroniciden ca on with the third physical loca on informa on.Embodiment 53. The non-transitory computer readable medium storage according to embodiment 51, wherein the one or more instruc ons which, when executed by a processor, causethe processor to: receive a h user input to determine a me period for associa ng the electroniciden ca on with the third physical loca on informa on.Embodiment 54. The non-transitory computer readable medium storage according to any of embodiments 52 and 53, wherein the one or more instruc ons which, when executed by aprocessor, cause the processor to: a er the me period, associate the electronic iden ca on withthe rst physical loca on informa on or the second physical loca on informa on.Embodiment 55. The non-transitory computer readable medium storage according to embodiment 44, wherein the one or more instruc ons which, when executed by a processor, causethe processor to: receive a request for permanent postal address associated with the electronic iden ca onto deliver the object to the user from a requester; in response to the request, provide a no ca on regarding the request to the user;determine whether a default postal address is set based on user informa on associated withthe electronic iden ca on; andin response to a determina on that the default postal address is set, provide the default postaladdress to the requester. Embodiment 56. The non-transitory computer readable medium storage according to embodiment 55, wherein the default postal address is set by the user. Embodiment 57. The non-transitory computer readable medium storage according to embodiment 56, wherein the one or more instruc ons which, when executed by a processor, causethe processor to: in response to a determina on that the default postal address is not set, receive a h userinput to select an alternate postal address from among physical postal address informa on, GPScoordinate informa on, codes for the physical loca on, and real- me tracking informa onrepresen ng a current physical loca on of the user;using, an Ar cial Intelligence (AI) model, determine whether the selected alternate postaladdress is valid or not based on at least one of loca on-based postal addressing parameters andpersonal informa on associated with the user; andin response to a determina on that the selected alternate postal address is valid, provide theDB1 / 161314422.1selected alternate postal address to the requester. Embodiment 58. A method for dynamically providing a postal address, comprising: receiving non-standard postal address informa on associated with a user;determining whether the non-standard postal address informa on corresponds to anelectronic iden ca on of the user;no fying the user, via a smart device or compu ng system, of an incoming request for theuser’s standard postal address, or other private informa on;controlling release of the user’s standard postal address or other private informa on accordingto an authoriza on ac on by the user;in response to the authoriza on ac on by the user,associa ng the electronic iden ca on of the user with a standard postal address of the userstored on the user’s smart device or compu ng system;valida ng the standard postal address of the user to ensure deliverability within exis ngmailing and shipping systems; and releasing the standard postal address to a reques ng en ty for performing at least one ofshipping, delivery, communica on, or iden ca on.Embodiment 59. A system for dynamically providing a postal address, comprising: a memory; aprocessor con gured to perform:receiving non-standard postal address informa on associated with a user;determining whether the non-standard postal address informa on corresponds to anelectronic iden ca on of the user;no fying the user, via a smart device or compu ng system, of an incoming request for theuser’s standard postal address, or other private informa on;controlling release of the user’s standard postal address or other private informa on accordingto an authoriza on ac on by the user;in response to the authoriza on ac on by the user,associa ng the electronic iden ca on of the user with a standard postal address of the userstored on the user’s smart device or compu ng system;valida ng the standard postal address of the user to ensure deliverability within exis ngmailing and shipping systems; and releasing the standard postal address to a reques ng en ty for performing at least one ofshipping, delivery, communica on, or iden ca on.DB1 / 161314422.1Embodiment 60. A non-transitory computer readable medium storage con gured to one ormore instruc ons which, when executed by a processor, cause the processor to perform:receiving non-standard postal address informa on associated with a user;determining whether the non-standard postal address informa on corresponds to anelectronic iden ca on of the user;no fying the user, via a smart device or compu ng system, of an incoming request for theuser’s standard postal address, or other private informa on;controlling release of the user’s standard postal address or other private informa on accordingto an authoriza on ac on by the user;in response to the authoriza on ac on by the user,associa ng the electronic iden ca on of the user with a standard postal address of the userstored on the user’s smart device or compu ng system;valida ng the standard postal address of the user to ensure deliverability within exis ngmailing and shipping systems; and controlling the standard postal address to a reques ng en ty for performing at least one ofshipping, delivery, communica on, or iden ca on.DB1 / 161314422.1

Claims

Claims What is claimed is:

1. A method for dynamically providing a postal address, comprising: receiving non-standard postal address informa on for a user;determining whether the non-standard postal address informa on corresponds to anelectronic iden ca on of the user that is provided as the postal address of parcel or le er to bedelivered to the user; in response to a determina on that the non-standard postal address informa on correspondsto the electronic iden ca on of the user, associa ng the non-standard postal address informa onwith the electronic iden ca on of the user;genera ng the postal address based on the non-standard postal address informa on; andcontrolling at least one opera on for shipping and delivery, communica on and iden ca onof the user based on the postal address.

2. The method according to claim 1, wherein the non-standard postal address informa onincludes alphanumerical informa on, pictorial iden ca on informa on, microprocessor-basediden ers, and biometric iden ers uniquely assigned to the user.

3. The method according to claim 2, wherein the alphanumerical informa on includes at leastone of email address informa on, social media account informa on, messenger app accountinforma on, commercial / non-commercial internet service provider’s account informa on,Geocoding informa on.

4. The method according to claim 2, wherein the pictorial iden ca on informa on includesat least one of QR code, barcode, imagery, and gura ve biometric informa on.

5. The method according to claim 4 wherein the gura ve biometric informa on includesngerprint of the user.

6. The method according to claim 1, wherein the electronic iden ca on of the user isassociated with physical loca on informa on represen ng a physical loca on of the user.DB1 / 161314422.

17. The method according to claim 1, comprising: con gure a graphical user interface to no fy the user of an incoming request for at least oneof a user’s standard postal address and other private informa on; andcontrol display of the at least one of a user’s standard postal address and other private informa on based on a user input.

8. The method according to claim 1, comprising: retrieving rst physical loca on informa on represen ng a rst physical loca on associatedwith the user; using, an Ar cial Intelligence (AI) model, determining whether the rst physical loca oninforma on associated with the electronic iden ca on of the user is valid or not based on at leastone of loca on-based postal addressing parameters and informa on associated with the user;in response to a determina on that the rst physical loca on informa on is valid, associa ngthe electronic iden ca on with the rst physical loca on informa on; andenable the electronic iden ca on to be provided as the postal address for at least one ofshipping and delivery, communica on and iden ca on of the user.

9. A system for dynamically providing a postal address, comprising: a memory; aprocessor con gured to:receive non-standard postal address informa on for a user;determine whether the non-standard postal address informa on corresponds to an electroniciden ca on of the user that is provided as the postal address of parcel or le er to be delivered tothe user; in response to a determina on that the non-standard postal address informa on correspondsto the electronic iden ca on of the user, associate the non-standard postal address informa on withthe electronic iden ca on of the user; generate the postal address based on the non-standard postaladdress informa on; andcontrol at least one opera on for shipping and delivery, communica on and iden ca on ofthe user based on the postal address.

10. A non-transitory computer readable medium storage con gured to one or more instruc onswhich, when executed by a processor, cause the processor to: DB1 / 161314422.1receive non-standard postal address informa on for a user;determine whether the non-standard postal address informa on corresponds to an electroniciden ca on of the user that is provided as a postal address of parcel or le er to be delivered to theuser; in response to a determina on that the non-standard postal address informa on correspondsto the electronic iden ca on of the user, associate the non-standard postal address informa on withthe electronic iden ca on of the user; generate a postal address based on the non-standard postaladdress informa on; andcontrol at least one opera on for shipping and delivery, communica on and iden ca on ofthe user based on the postal address. DB1 / 161314422.1